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C. elegans is proving useful for the study of cell determination in early embryos. Breeding experiments with embryonic lethal mutants show that abnormal embryogenesis often results from defective gene function in the maternal parent, suggesting that much of the information for normal embryonic development is laid down during oogenesis. Analysis of a gut-specific differentiation marker in cleavage-arrested embryos has provided evidence that the potential for this differentiation behaves as a cell-autonomous internally segregating developmental determinant, which is present from the 2-cell stage onward and is partitioned into the gut precursor cell during early cleavage divisions. Visible prelocalized cytoplasmic granules that segregate with a particular cell lineage have heen observed in the embryonic germline precursor cells by fluorescent antibody staining. Whether these granules play a role in germline determina... [remainder of abstract missing in original] 相似文献
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Regulation and Functional Expression of
Cinnamate
4-Hydroxylase from Parsley 总被引:2,自引:0,他引:2 下载免费PDF全文
A previously isolated parsley (Petroselinum crispum) cDNA with high sequence similarity to cinnamate 4-hydroxylase (C4H) cDNAs from several plant sources was expressed in yeast (Saccharomyces cerevisiae) containing a plant NADPH:cytochrome P450 oxidoreductase and verified as encoding a functional C4H (CYP73A10). Low genomic complexity and the occurrence of a single type of cDNA suggest the existence of only one C4H gene in parsley. The encoded mRNA and protein, in contrast to those of a functionally related NADPH:cytochrome P450 oxidoreductase, were strictly coregulated with phenylalanine ammonia-lyase mRNA and protein, respectively, as demonstrated by coinduction under various conditions and colocalization in situ in cross-sections from several different parsley tissues. These results support the hypothesis that the genes encoding the core reactions of phenylpropanoid metabolism form a tight regulatory unit. 相似文献
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Starch
granules from maize (Zea mays) contain a characteristic
group of polypeptides that are tightly associated with the starch
matrix (C. Mu-Forster, R. Huang, J.R. Powers, R.W. Harriman, M. Knight,
G.W. Singletary, P.L. Keeling, B.P. Wasserman [1996] Plant Physiol
111: 821–829). Zeins comprise about 50% of the granule-associated
proteins, and in this study their spatial distribution within the
starch granule was determined. Proteolysis of starch granules at
subgelatinization temperatures using the thermophilic protease
thermolysin led to selective removal of the zeins, whereas
granule-associated proteins of 32 kD or above, including the waxy
protein, starch synthase I, and starch-branching enzyme IIb, remained
refractory to proteolysis. Granule-associated proteins from maize are
therefore composed of two distinct classes, the surface-localized zeins
of 10 to 27 kD and the granule-intrinsic proteins of 32 kD or higher.
The origin of surface-localized δ-zein was probed by comparing
δ-zein levels of starch granules obtained from homogenized whole
endosperm with granules isolated from amyloplasts. Starch granules from
amyloplasts contained markedly lower levels of δ-zein relative to
granules prepared from whole endosperm, thus indicating that δ-zein
adheres to granule surfaces after disruption of the amyloplast
envelope. Cross-linking experiments show that the zeins are deposited
on the granule surface as aggregates. In contrast, the
granule-intrinsic proteins are prone to covalent modification, but do
not form intermolecular cross-links. We conclude that individual
granule intrinsic proteins exist as monomers and are not deposited in
the form of multimeric clusters within the starch matrix.It has long been known that starch granules contain bound
polypeptides, with protein levels of isolated starch granules from
maize (Zea mays) ranging from 0.3 to 1.0% based upon
measurement of N2 (May, 1987). A recent study by our
laboratory demonstrates that isolated starch granules from maize
contain several dozen strongly bound polypeptides (Mu-Forster et al.,
1996). The granule-associated proteins include starch-biosynthetic
enzymes such as the waxy protein, SSI, and SBEIIb. These polypeptides
are not removed from intact starch granules by protease treatment or
detergent washing; therefore, they are believed to bind to the starch
and to become irreversibly entrapped within the starch
matrix.Based upon staining intensities of polypeptides extracted from the
starch granule (Mu-Forster et al., 1996), approximately one-half of the
granule-associated proteins in maize consist of low-molecular-mass
polypeptides ranging between 10 and 27 kD. These bands fall within the
size range displayed by the zein storage proteins, however, the spatial
distribution of these polypeptides within the starch granule is
unknown. Zeins have been defined as alcohol-soluble proteins that occur
principally in protein bodies of maize endosperm and that may or may
not require reduction before extraction (Wilson, 1991). The association
of zeins with starch granules during endosperm development would not be
expected because zein genes do not contain transit peptides that would
target these proteins through the amyloplast envelope into the
amyloplast stroma.The objective of this study was to establish the topology of
granule-associated zeins in starch granules from maize endosperm. To
accomplish this, it was necessary to distinguish between
surface-localized and internalized polypeptides. Our working hypothesis
defines polypeptides localized at the starch granule surface as those
that are susceptible to hydrolysis upon treatment of intact granules
with exogenous proteases. Conversely, internal granule proteins are
defined as those that (a) become susceptible to proteolysis only
following thermal disruption of the starch matrix, and (b) resist
extraction by 2% SDS at room temperatures (Denyer et al., 1993; Rahman
et al., 1995; Mu-Forster et al., 1996).In this study we were able to distinguish between surface-localized and
internalized granule-associated polypeptides in starch granules
from maize endosperm by use of the thermophilic protease thermolysin.
Thermolysin is well suited for this purpose because it is highly active
at starch-gelatinization temperatures, and has also been shown to
effectively hydrolyze hydrophobic proteins located at the surfaces of
chloroplasts and other subcellular organelles (Cline et al., 1984; Xu
and Chitnis, 1995). Upon extended incubation of intact starch granules
with thermolysin at subgelatinization temperatures, we found that zeins
were selectively removed from the starch granule surface. All other
granule-associated polypeptides remained inaccessible to proteolytic
attack or to extraction by 2% SDS, unless the starch matrix was first
disrupted by gelatinization. Our results distinguish between the
surface-localized and granule-intrinsic proteins of maize endosperm,
and establish that zeins are localized at the starch-granule surface.
In addition, cross-linking experiments were conducted to determine
nearest-neighbor relationships among zein subunits localized at the
granule surface and granule intrinsic polypeptides localized within the
starch matrix. 相似文献
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An in Vitro System from Maize Seedlings for
Tryptophan-Independent Indole-3-Acetic Acid
Biosynthesis 总被引:1,自引:0,他引:1 下载免费PDF全文
The enzymatic synthesis of indole-3-acetic acid (IAA) from indole by an in vitro preparation from maize (Zea mays L.) that does not use tryptophan (Trp) as an intermediate is described. Light-grown seedlings of normal maize and the maize mutant orange pericarp were shown to contain the necessary enzymes to convert [14C]indole to IAA. The reaction was not inhibited by unlabeled Trp and neither [14C]Trp nor [14C]serine substituted for [14C]indole in this in vitro system. The reaction had a pH optimum greater than 8.0, required a reducing environment, and had an oxidation potential near that of ascorbate. The results obtained with this in vitro enzyme preparation provide strong, additional evidence for the presence of a Trp-independent IAA biosynthesis pathway in plants. 相似文献
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SYNOPSIS. Fundamentally different mechanisms regulate femalesexual behavior in the ovoviviparous guppy and the oviparousgoldfish. In the female guppy, ovarian estrogen evidently synchronizescycles of sexual receptivity with endogenous cycles of ovarianmaturation and also increases female attractivity at the timeof maximum receptivity by stimulating the release of a sexualpheromone. In the goldfish, it appears that prostaglandin, releasedfrom the ovary or oviduct in conjunction with ovulation andthe presence of ovulated eggs, acts on the brain to stimulatespawning behavior. In contrast to the situation in the guppy,steroid treatments alone (in the absence of ovulated eggs) failto stimulate spawning behavior in the goldfish. It isproposedthat endocrine mechanisms regulating female sexual behaviorin the teleosts and in other vertebrates are less related tophylogeny than to the mode of reproduction employed. In thegoldfish and several other externally fertilizing teleosts,where sexual behavior involves oviposition, female sexual behaviorapparently is synchronized with ovulation by mechanisms whichrespond to elevated plasma prostaglandin as an indicator ofthe presence of ovulated eggs. In internally fertilizing species(guppy, reptiles, birds, mammals), where sexual behavior andfertilizationare temporally dissociated, female sexual behavior is synchronizedwith ovulation by mechanisms which anticipate either an imminentspontaneous ovulation, or the potential for reflex ovulation,by responding to increases in plasma estrogen associated withfolliculardevelopment. 相似文献
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Oilbody Proteins in Microspore-Derived Embryos of Brassica napus: Hormonal, Osmotic, and Developmental Regulation of Synthesis 总被引:2,自引:2,他引:2 下载免费PDF全文
A number of treatments were tested for their ability to affect the synthesis of oilbody proteins in microspore-derived embryos of rapeseed (Brassica napus). Synthesis of the oilbody proteins was determined by [35S]methionine incorporation in vivo and sodium dodecyl sulfate-polyacrylamide gel electrophoresis of washed oilbody fractions. Oilbody proteins of approximately 19, 23, and 32 kilodaltons were found to be prominent. These proteins showed differential patterns of regulation. The 19 and 23 kilodalton proteins (oleosins) were greatly enhanced by treatments with abscisic acid, jasmonic acid, and osmotic stress imposed using sorbitol (12.5%). Synthesis of the 32 kilodalton protein was inhibited by abscisic acid and by sorbitol (12.5%), but unaffected by jasmonates. The strong promotion of synthesis of the 19 and 23 kilodalton oilbody proteins appeared to be specific as they are not seen with gibberellic acid treatment or with a stress such as heat shock. Time course experiments revealed that the abscisic acid stimulation of oleosin synthesis is quite rapid (less than 2 hours), reaching a maximum at 6 to 8 hours. The response of the oleosins to abscisic acid is found in all stages of embryogenesis, with a major increase in synthetic rates even in globular embryos on abscisic acid treatment. This suggests that these proteins may accumulate much earlier in embryogenesis than has previously been believed. The 32 kilodalton oilbody-associated protein appears different from the oleosins in several ways, including its distinct pattern of regulation and its unique property, among the oilbody proteins, of undergoing phosphorylation. 相似文献
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Daniel Lingwood Sebastian Schuck Charles Ferguson Mathias J. Gerl Kai Simons 《The Journal of biological chemistry》2009,284(18):12041-12048
Cell membranes predominantly consist of lamellar lipid bilayers. When
studied in vitro, however, many membrane lipids can exhibit
non-lamellar morphologies, often with cubic symmetries. An open issue is how
lipid polymorphisms influence organelle and cell shape. Here, we used
controlled dimerization of artificial membrane proteins in mammalian tissue
culture cells to induce an expansion of the endoplasmic reticulum (ER) with
cubic symmetry. Although this observation emphasizes ER architectural
plasticity, we found that the changed ER membrane became sequestered into
large autophagic vacuoles, positive for the autophagy protein LC3. Autophagy
may be targeting irregular membrane shapes and/or aggregated protein. We
suggest that membrane morphology can be controlled in cells.The observation that simple mixtures of amphiphilic (polar) lipids and
water yield a rich flora of phase structures has opened a long-standing debate
as to whether such membrane polymorphisms are relevant for living organisms
(1–7).
Lipid bilayers with planar geometry, termed lamellar symmetry, dominate the
membrane structure of cells. However, this architecture comprises only a
fraction of the structures seen with in vitro lipid-water systems
(7–11).
The propensity to form lamellar bilayers (a property exclusive to
cylindrically shaped lipids) is flanked by a continuum of lipid structures
that occur in a number of exotic and probably non-physiological
non-bilayer configurations
(3,
12). However, certain lipids,
particularly those with smaller head groups and more bulky hydrocarbon chains,
can adopt bilayered non-lamellar phases called cubic phases. Here the
bilayer is curved everywhere in the form of saddle shapes corresponding to an
energetically favorable minimal surface of zero mean curvature
(1,
7). Because a substantial
number of the lipids present in biological membranes, when studied as
individual pure lipids, form cubic phases
(13), cubic membranes have
received particular interest in cell biology.Since the application of electron microscopy
(EM)3 to the study of
cell ultrastructure, unusual membrane morphologies have been reported for
virtually every organelle (14,
15). However, interpretation
of three-dimensional structures from two-dimensional electron micrographs is
not easy (16). In seminal
work, Landh (17) developed the
method of direct template correlative matching, a technique that unequivocally
assesses the presence of cubic membranes in biological specimens
(16). Cubic phases adopt
mathematically well defined three-dimensional configurations whose
two-dimensional analogs have been derived
(4,
17). In direct template
correlative matching, electron micrographs are matched to these analogs. Cubic
cell membrane geometries and in vitro cubic phases of purified lipid
mixtures do differ in their lattice parameters; however, such deviations are
thought to relate to differences in water activity and lipid to protein ratios
(10,
14,
18). Direct template
correlative matching has revealed thousands of examples of cellular cubic
membranes in a broad survey of electron micrographs ranging from protozoa to
human cells (14,
17) and, more recently, in the
mitochondria of amoeba (19)
and in subcellular membrane compartments associated with severe acute
respiratory syndrome virus
(20). Analysis of cellular
cubic membranes has also been furthered by the development of EM tomography
that confirmed the presence of cubic bilayers in the mitochondrial membranes
of amoeba (21,
22).Although it is now clear that cubic membranes can exist in living cells,
the generation of such architecture would appear tightly regulated, as
evidenced by the dominance of lamellar bilayers in biology. In this light, we
examined the capability and implications of generating cubic membranes in the
endoplasmic reticulum (ER) of mammalian tissue culture cells. The ER is a
spatially interconnected complex consisting of two domains, the nuclear
envelope and the peripheral ER
(23–26).
The nuclear envelope surrounds the nucleus and is composed of two continuous
sheets of membranes, an inner and outer nuclear membrane connected to each
other at nuclear pores. The peripheral ER constitutes a network of branching
trijunctional tubules that are continuous with membrane sheet regions that
occur in closer proximity to the nucleus. Recently it has been suggested that
the classical morphological definition of rough ER (ribosome-studded) and
smooth ER (ribosome-free) may correspond to sheet-like and tubular ER domains,
respectively (27). The ER has
a strong potential for cubic architectures, as demonstrated by the fact that
the majority of cubic cell membranes in the EM record come from ER-derived
structures (14,
17). Furthermore, ER cubic
symmetries are an inducible class of organized smooth ER (OSER), a definition
collectively referring to ordered smooth ER membranes (=stacked cisternae on
the outer nuclear membrane, also called Karmelle
(28–30),
packed sinusoidal ER (31),
concentric membrane whorls
(30,
32–34),
and arrays of crystalloid ER
(35–37)).
Specifically, weak homotypic interactions between membrane proteins produce
both a whorled and a sinusoidal OSER phenotype
(38), the latter exhibiting a
cubic symmetry (16,
39).We were able to produce OSER with cubic membrane morphology via induction
of homo-dimerization of artificial membrane proteins. Interestingly, the
resultant cubic membrane architecture was removed from the ER system by
incorporation into large autophagic vacuoles. To assess whether these cubic
symmetries were favored in the absence of cellular energy, we depleted ATP. To
our surprise, the cells responded by forming large domains of tubulated
membrane, suggesting that a cubic symmetry was not the preferred conformation
of the system. Our results suggest that whereas the endoplasmic reticulum is
capable of adopting cubic symmetries, both the inherent properties of the ER
system and active cellular mechanisms, such as autophagy, can tightly control
their appearance. 相似文献
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Alterations in the Cytoskeleton Accompany Aluminum-Induced Growth
Inhibition and Morphological Changes in Primary Roots of
Maize 总被引:11,自引:0,他引:11 下载免费PDF全文
Although Al is one of the major factors limiting crop production, the mechanisms of toxicity remain unknown. The growth inhibition and swelling of roots associated with Al exposure suggest that the cytoskeleton may be a target of Al toxicity. Using indirect immunofluorescence microscopy, microtubules and microfilaments in maize (Zea mays L.) roots were visualized and changes in their organization and stability correlated with the symptoms of Al toxicity. Growth studies showed that the site of Al toxicity was associated with the elongation zone. Within this region, Al resulted in a reorganization of microtubules in the inner cortex. However, the orientation of microtubules in the outer cortex and epidermis remained unchanged even after chronic symptoms of toxicity were manifest. Auxin-induced reorientation and cold-induced depolymerization of microtubules in the outer cortex were blocked by Al pretreatment. These results suggest that Al increased the stability of microtubules in these cells. The stabilizing effect of Al in the outer cortex coincided with growth inhibition. Reoriented microfilaments were also observed in Al-treated roots, and Al pretreatment minimized cytochalasin B-induced microfilament fragmentation. These data show that reorganization and stabilization of the cytoskeleton are closely associated with Al toxicity in maize roots. 相似文献
14.
wrinkled1: A Novel, Low-Seed-Oil Mutant of
Arabidopsis with a Deficiency in the Seed-Specific Regulation of
Carbohydrate Metabolism 总被引:10,自引:1,他引:10 下载免费PDF全文
During oil deposition in developing seeds of Arabidopsis, photosynthate is imported in the form of carbohydrates into the embryo and converted to triacylglycerols. To identify genes essential for this process and to investigate the molecular basis for the developmental regulation of oil accumulation, mutants producing wrinkled, incompletely filled seeds were isolated. A novel mutant locus, wrinkled1 (wri1), which maps to the bottom of chromosome 3 and causes an 80% reduction in seed oil content, was identified. Wild-type and homozygous wri1 mutant plantlets or mature plants were indistinguishable. However, developing homozygous wri1 seeds were impaired in the incorporation of sucrose and glucose into triacylglycerols, but incorporated pyruvate and acetate at an increased rate. Because the activities of several glycolytic enzymes, in particular hexokinase and pyrophosphate-dependent phosphofructokinase, are reduced in developing homozygous wri1 seeds, it is suggested that WRI1 is involved in the developmental regulation of carbohydrate metabolism during seed filling. 相似文献
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Fabrice Dumas Richard D. Byrne Ben Vincent Tina M. C. Hobday Dominic L. Poccia Banafshé Larijani 《PloS one》2010,5(8)
Membrane fusion plays a central role in many cell processes from vesicular
transport to nuclear envelope reconstitution at mitosis but the mechanisms that
underlie fusion of natural membranes are not well understood. Studies with
synthetic membranes and theoretical considerations indicate that accumulation of
lipids characterised by negative curvature such as diacylglycerol (DAG)
facilitate fusion. However, the specific role of lipids in membrane fusion of
natural membranes is not well established. Nuclear envelope (NE) assembly was
used as a model for membrane fusion. A natural membrane population highly
enriched in the enzyme and substrate needed to produce DAG has been isolated and
is required for fusions leading to nuclear envelope formation, although it
contributes only a small amount of the membrane eventually incorporated into the
NE. It was postulated to initiate and regulate membrane fusion. Here we use a
multidisciplinary approach including subcellular membrane purification,
fluorescence spectroscopy and Förster resonance energy transfer
(FRET)/two-photon fluorescence lifetime imaging microscopy (FLIM) to demonstrate
that initiation of vesicle fusion arises from two unique sites where these
vesicles bind to chromatin. Fusion is subsequently propagated to the endoplasmic
reticulum-derived membranes that make up the bulk of the NE to ultimately
enclose the chromatin. We show how initiation of multiple vesicle fusions can be
controlled by localised production of DAG and propagated bidirectionally.
Phospholipase C (PLCγ), GTP hydrolysis and
(phosphatidylinsositol-(4,5)-bisphosphate (PtdIns(4,5)P2) are
required for the latter process. We discuss the general implications of membrane
fusion regulation and spatial control utilising such a mechanism. 相似文献
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17.
Thirty-five populations of Heterodera glycines and populations of 15 other Heterodera, Globodera, and Punctodera species were studied morphometrically and some were compared serologically. There was a wide range of each measurement within each nematode population. Except for one soybean cyst nematode population from Indiana, which was a tetraploid and considerably larger than the others, morphometric measurements overlapped. In a discriminant function comparison most of the populations were closely grouped but at least three were rather distinctly separated. Morphometrically H. fici, H. cruciferae, H. schachtii, and H. trifolii were closely associated with H. glycines. Serology indicated a close relationship between H. glycines, H. lespedezae, H. trifolii, H. schachtii, and the Heterodera sp. from Rumex, while H. betulae appeared to be more distantly related. 相似文献
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