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71.
Quantitative measurements of neuron behavior from time-lapse microcinematography of dissociated cultures of normal (+/+), heterozygous weaver (+/wv), and homozygous weaver (wv/wv) 7-day-old mouse cerebellum were performed to identify dose-dependent expressions of the mutant allele. Impaired neurite growth by granule cell neurons is a direct result of a dose-dependent increased frequency of neurite retraction and decreased rate of growth cone advancement. The number of retractions per neurite is 0.2, 1.0, and 2.0 for +/+, +/wv, and wv/wv neurites, respectively. Maximal rates of growth cone advancement are 1041, 443, and 250 micron/day for +/+, +/wv, and wv/wv granule cell neurites, respectively. Neurite initiation is actually increased in wv/wv cultures, though the neurites are not well sustained. The frequency of neurite initiation is 1.0, 1.7, and 2.2 for +/+, +/wv, and wv/wv neurons, respectively. Measurements of oscillations of somal position revealed that the cell center moves increasing distances over short times in proportion to the number of mutant genes. Nuclear translocation, the mode of somal migration in vivo and in vitro, occurs at the same frequency and rate in normal and mutant cultures. Weaver gene expression induces a cytopathology affecting various morphogenetic events rather than producing a block at a specific stage in granule cell differentiation. It is hypothesized that the dose-dependent impairments of cell motility reflect weaver gene action at the cell surface or cytoskeleton. 相似文献
72.
73.
A study was carried out to compare three rapid methods for detection of Salmonella spp. The fluorogenic MUCAP test (Biolife, Italy), the SM-ID agar test (bioMérieux, France) and the Rambach agar test (Merck, Germany) were used in this study to examine 103 strains (69 Salmonella strains and 34 non- Salmonella strains). Two conventional culture media, Hektoen and Leifson agars, were also included. The sensitivities of the MUCAP, SM-ID, Rambach and Hektoen agar tests for pure strains were 100, 93, 88 and 99%, respectively, and their specificities were 74, 97, 76 and 59%, respectively. A total of 100 stool samples from patients with acute diarrhoea was also tested and showed great discrepancy between the different methods. In agreement with other investigators, it was found that the discriminating capacity of Rambach and SM-ID as primary plating media was very restricted. The MUCAP test was very sensitive, rapid and easy to perform but not very specific. In view of these results, it is essential to combine different methods for the accurate and reliable detection of Salmonella strains. 相似文献
74.
Phylogenetic relationships among prokaryotic and eukaryotic catalases 总被引:13,自引:1,他引:12
Seventy-four catalase protein sequences, including 29 bacterial, 8 fungal,
7 animal, and 30 plant sequences, were compiled, and 70 were used for
phylogenetic reconstruction. The core of the resulting tree revealed
unique, separate groups of plant and animal catalases, two groups of fungal
catalases, and three groups of bacterial catalases. The only overlap of
kingdoms occurred within one branch and involved fungal and bacterial
large-subunit enzymes. The other fungal branch was closely linked to the
group of animal enzymes. Group I bacterial catalases were more closely
related to the plant enzymes and contained such diverse taxa as the
Gram-positive Listeria seeligeri, Deinocococcus radiodurans, and
gamma-proteobacteria. Group III bacterial sequences were more closely
related to fungal and animal sequences and included enzymes from a broad
range of bacteria including high- and low-GC Gram positives,
proteobacteria, and a bacteroides species. Group II was composed of
large-subunit catalases from diverse sources including Gram positives
(low-GC Bacilli and high-GC Mycobacteria), proteobacteria, and species of
the filamentous fungus Aspergillus. These data can be interpreted in terms
of two gene duplication events that produced a minimum of three catalase
gene family members that subsequently evolved in response to environmental
demands. Horizontal gene transfer may have been responsible for the group
II mixture of bacterial and fungal large-subunit catalases.
相似文献
75.
76.
Sequence variation in the guillemot (Alcidae: Cepphus) mitochondrial control region and its nuclear homolog 总被引:4,自引:0,他引:4
We describe sequence variation in the mitochondrial control region and its
nuclear homolog in three species and seven subspecies of guillemots
(Cepphus spp.). Nuclear homologs of the 5' end of the control region were
found in all individuals. Nuclear sequences were approximately 50%
divergent from their mitochondrial counterparts and formed a distinct
phylogenetic clade; the mitochondrial-nuclear introgression event must have
predated the radiation of Cepphus. As in other vertebrates, the guillemot
control region has a relatively conserved central block flanked by
hypervariable 5' and 3' ends. Mean pairwise interspecific divergence values
among control regions were lower than those in other birds. All individuals
were heteroplasmic for the number of simple tandem nucleotide repeats
(A(n)C) at the 3' end of the control region. Phylogenetic analyses suggest
that black guillemots are basal to pigeon and spectacled guillemots, but
evolutionary relationships among subspecies remain unresolved, possibly due
to incomplete lineage sorting. Describing molecular variation in nuclear
homologs of mitochondrial genes is of general interest in phylogenetics
because, if undetected, the homologs may confound interpretations of
mitochondrial phylogenies.
相似文献
77.
A phylogenetic survey using the polymerase chain reaction (PCR) has
identified four major P element subfamilies in the saltans and willistoni
species groups of Drosophila. One subfamily, containing about half of the
sequences studied, consists of elements that are very similar to the
canonical (and active) P element from D. melanogaster. Within this
subfamily, nucleotide sequence differentiation among different copies from
the same species and among elements from different species is relatively
low. This observation suggests that the canonical elements are relatively
recent additions to the genome or, less likely, are evolving slowly
relative to the other subfamilies. Elements belonging to the three
noncanonical lineages are distinct from the canonical elements and from one
another. Furthermore, there is considerably more sequence variation, on the
average, within the noncanonical subfamilies compared to the canonical
elements. Horizontal transfer and the coexistence of multiple,
independently evolving element subfamilies in the same genome may explain
the distribution of P elements in the saltans and willistoni species
groups. Such explanations are not mutually exclusive, and each may be
involved to varying degrees in the maintenance of P elements in natural
populations of Drosophila.
相似文献
78.
Pig Reticulocytes. III. Glucose permeability in naturally occurring reticulocytes and red cells from newborn piglets 总被引:1,自引:1,他引:0
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The loss of facilitated glucose transport of red cells occurring in the newborn pig was monitored in 11 density-separated cells from birth to a 4 wk of age. At birth there was a threefold increase in glucose permeability from the lightest cells to the most dense, suggesting that cells having progressively less glucose permeability are released into the circulation as gestation proceeds. Because of extraordinary stimulation of erythropoietic activity, the uppermost top fraction constituting 2-3 percent of the total cells is composed purely of reticulocytes in the growing animal. The glucose permeability of these reticulocytes which at birth has a slow but significant rate of 3.7 μmol/ml cell x min at 25 degrees C is rapidly decreased within 3-4 days to the level of reticulocytes produced in the adult in response to phenylhydrazine assault. Moreover, reticulocytes themselves discard their membrane permeability to glucose in the course of maturation to red cells. Thus, even though reticulocytes at birth are permeable to glucose, they will become red cells practically impervious to glucose within a few days. These findings suggest that the transition from a glucose- permeable fetal state to a glucose-impermeable postnatal state is brought about by two mechanisms: (a) dilution of fetal cells by glucose-impervious cells produced coincidentally with or shortly after birth; and (b) elimination of fetal cells, which have a shorter half-life, from the circulation. 相似文献
79.
Fate of surface proteins of rabbit polymorphonuclear leukocytes during phagocytosis. I. Identification of surface proteins
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To study the fate of external membrane proteins during phagocytosis, rabbit peritoneal neutrophils were labeled by enzymatic iodination. Iodine was incorporated into at least 13 proteins ranging in size from approximately 250,000 to 18,000 daltons as judged from autoradiography of gels after SDS-polyacrylamide gel electrophoresis of labeled cells. The major contractile proteins of neutrophils, actin and myosin, were not labeled when intact cells were iodinated but were labeled when homogenates of these cells were iodinated. Nine of the iodinated proteins were released by mild protease treatment of intact cells. A plasma membrane-rich fraction was isolated by density centrifugation. This fraction was enriched at least 10-fold for lactoperoxidase-labeled acid-insoluble proteins. It was enriched to the same extent for the presence of iodinated wheat germ agglutinin that had been bound to intact cells at 4 degrees C before homogenization. Analysis of SDS-polyacrylamide gel electrophoresis revealed that the proteins of this fraction were predominantly of high molecular weight. However, only 8 of the 13 proteins iodinated on intact cells were found in this fraction. The remaining five were enriched in a dense fraction containing nuclei, intact cells, and membranous vesicles, and may represent a specialized segment of the neutrophil cell surface. 相似文献
80.
Brennan FM Smith NM Owen S Li C Amjadi P Green P Andersson A Palfreeman AC Hillyer P Foey A Beech JT Feldmann M 《Arthritis research & therapy》2008,10(2):R36-13