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31.
During preimplantation development in mammals, distinct epigenetic marks on oocyte and sperm DNA are remodeled to an embryonic pattern. A recent study examining global methylation of repetitive elements in various mammals showed that the reprogramming that occurs during normal preimplantation development is aberrant in cloned embryos. 相似文献
32.
Background
Sequence related families of genes and proteins are common in bacterial genomes. In Escherichia coli they constitute over half of the genome. The presence of families and superfamilies of proteins suggest a history of gene duplication and divergence during evolution. Genome encoded protein families, their size and functional composition, reflect metabolic potentials of the organisms they are found in. Comparing protein families of different organisms give insight into functional differences and similarities. 相似文献33.
The adult Drosophila retina is a highly polarized epithelium derived from a precursor tissue that is initially symmetric across its dorsoventral axis. Specialized 90 degrees rotational movements of subsets of cells, the ommatidial precursors, establish mirror symmetry in the retinal epithelium. Myosin II, or Zipper (Zip), a motor protein, regulates the rate at which ommatidia rotate: in zip mutants, the rate of rotation is significantly slowed. Zip is concentrated in the cells that we show to be at the likely interface between rotating and non-rotating cells: the boundary between differentiated and undifferentiated cells. Zip is also robust in newly added ommatidial cells, consistent with our model that the machinery that drives rotation should shift to newly recruited cells as they are added to the growing ommatidium. Finally, cell death genes and canonical Wnt signaling pathway members genetically modify the zip phenotype. 相似文献
34.
RW Dapson 《Biotechnic & histochemistry》2013,88(3):133-140
Although the mechanics of formalin fixation and antigen retrieval have been studied extensively and reviewed periodically, little attention has been directed toward conformational changes in target molecules. Formaldehyde changes the shape of tissue molecules by appending small hydroxymethyl groups to them. These adducts, in turn, can react with other tissue molecules to form crosslinks, or they can participate in a variety of reactions during tissue processing, including formation of imines, ethoxymethyl adducts, and further crosslinks. Under the influence of alcohol dehydration, fixed DNA may fragment and form a variety of depurination products. The situation becomes even more complex with short fixation times because under these conditions, the dehydrating agent used for tissue processing denatures macromolecules in other ways, most notably through rearrangement of molecular shape to move hydrophobic realms outward and hydrophilic areas inward (hydrophobic inversions). How tissue molecules are modified affects the outcome of immunohistochemical staining and prospects for restoration of antigenicity. Immunoreacitivity may be compromised because epitopes are either sterically hidden, but otherwise unaffected, or they have been altered more directly. Enzyme-based retrieval methods are best suited for the former because they literally snip the molecule apart to reveal the portions of interest. Heat-induced retrieval with buffers can demodify affected epitopes by removing adducts and breaking crosslinks. The choice of temperature and pH is usually critical for optimal retrieval. Effective temperatures are directly related to the strength of bonds-higher temperatures are needed to break stronger bonds. The pH of the retrieval solution determines the charge on the tissue molecule; the goal is to create a charge that causes the demodified molecule to assume a near natural conformation. Rational use of these concepts should lead to better control of immunohistochemical reactions. 相似文献
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36.
In June 2008, the Biological Stain Commission sponsored A Seminar on Dyes and Staining the purpose of which was twofold: first, to show that very useful information applicable to biomedical dyes and staining is available from unrelated disciplines and second, to summarize modern thinking on how dyes, solvents, and tissues interact to produce selective staining. In this introduction to the papers from the symposium, we acknowledge that biomedical dye research has declined as newer technologies have gained importance. We should point out, however, that dyes and staining still are vitally important. Moreover, needs abound for innovative studies concerned with dye analysis, synthesis, and mode of action. Concepts and tools from unrelated fields hold promise for significant breakthroughs in many areas of interest. 相似文献
37.
The protein Z-dependent protease inhibitor is a serpin. 总被引:15,自引:0,他引:15
In the presence of phospholipid vesicles and calcium ions, protein Z (PZ) serves as a cofactor for the inhibition of coagulation factor Xa by a plasma protein called PZ-dependent protease inhibitor (ZPI). To further characterize ZPI, its cDNA has been isolated and cloned from a human liver cDNA library. The ZPI cDNA is 2.44 kb in length and has a relatively long 5' region (466 nt) that contains six potential ATG translation start codons. ATG's 1-4 are followed by short open reading frames, whereas ATG(5) and ATG(6) are in an uninterrupted open reading frame that includes the encoded ZPI protein. In vitro experiments show that ATG(6) is sufficient for the expression of rZPI in cultured Chinese hamster ovary cells. Northern analysis suggests the liver is a major site of ZPI synthesis. The predicted 423 residue amino acid sequence of the mature ZPI protein is 25-35% homologous with members of the serpin superfamily of protease inhibitors and is 78% identical to the amino acid sequence predicted by a previously described cDNA isolated from rat liver, regeneration-associated serpin protein-1 (rasp-1). Thus, ZPI is likely the human homologue of rat rasp-1. Alignment of the amino acid sequence of ZPI with those of other serpins predicts that Y387 is the P(1) residue at the reactive center of the ZPI molecule. Consistent with this notion, rZPI(Y387A), an altered form of ZPI in which tyrosine 387 has been changed to alanine, lacks PZ-dependent factor Xa inhibitory activity. 相似文献
38.
The IgG1hybridoma antibody, 91.9H, was originally raised against sulfated
mucins isolated from normal human colonic mucosa. Previous studies have
shown that the 91.9H antigen is expressed on normal colonic epithelial
cells and the sulfomucins that they produce, but not in the normal small
intestine and stomach. Tissue-specific changes occur in 91.9H antigen
expression in disease: the antigen diminishes in colonic carcinomas,
whereas in regions of gastric mucosa showing intestinal metaplasia and in
gastric carcinomas, the antigen is expressed as a "neo-antigen." This
report is concerned with elucidation, by the neoglycolipid technology, of
the determinant recognized by antibody 91.9H using sulfated and sialyl
oligosaccharides of Lewisa(Lea) and Lextypes, and analogs that lack
sulfate, sialic acid, or fucose. Binding experiments with the lipid-linked
oligosaccharides immobilized on chromatograms or on microwells, and
inhibition of binding experiments with free oligosaccharides based on di-,
tri- and tetrasaccharide backbones, show that the 91.9H antigenic
determinant is based on a trisaccharide backbone, and consists of the
3'-sulfated Leatetrasaccharide sequence, which is a potent ligand for the
E- and L-selectins. The antibody gives a relatively low signal with the
3'-sulfated non-fucosylated backbone, and has no detectable cross- reaction
with the 3'-sulfated Lexisomer, nor with sialyl-Leaand - Lexanalogues.
Antibody 91.9H is a valuable addition, therefore, to the repertoire of
reagents for mapping details of the distribution, and determining the
relative importance of sulfated and sialyl oligosaccharides as ligands for
the selectins, in normal and pathological epithelia and endothelia.
相似文献
39.
Phylogenetic utility of elongation factor-1 alpha in noctuoidea (Insecta: Lepidoptera): the limits of synonymous substitution 总被引:1,自引:1,他引:1
Mitchell A; Cho S; Regier JC; Mitter C; Poole RW; Matthews M 《Molecular biology and evolution》1997,14(4):381-390
To test its phylogenetic utility, nucleotide sequence variation in a
1,240-bp fragment of the elongation factor-1 alpha (EF-1 alpha) gene was
examined in 49 moth species representing the major groups of the
superfamily Noctuoidea. Both parsimony and distance analyses supported the
monophyly of nearly all groups for which there are clear morphological
synapomorphies. Clades of subfamily rank and lower, probably mid-Tertiary
and younger, were strongly supported. The third codon position contains 88%
of variable sites, and approaches saturation at approximately 20% sequence
divergence, possibly due to among-site rate heterogeneity and composition
bias; higher divergences occur only in association with shifts in
composition. Surprisingly, the few nonsynonymous changes appear no more
phylogenetically reliable than synonymous changes. Signal strength for
basal divergences is weak and fails to improve with character weighting;
thus, dense taxon sampling is probably needed for strong inference from
EF-1 alpha regarding deeper splits in Noctuoidea (probably early Tertiary).
EF-1 alpha synonymous changes show promise for phylogeny reconstruction
within Noctuidae and other groups of Tertiary age.
相似文献
40.