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271.
Implantation-associated proteinase in mouse uterine fluid   总被引:1,自引:0,他引:1  
Proteinase activity was detected in mouse uterine fluid by means of a new casein-substrate assay. The activity was found to be generally low in diestrous and proestrous stages of the estrous cycle and was more variable in proestrous. During pregnancy, activity was very low on day 1 (counting the plug date as day 0). By day 3, proteinase activity (expressed as Pronase equivalents/mg protein of uterine fluid) increased more than 100-fold, and then declined on day 4. Peak activity thus coincides with initiation of embryo implantation, which occurs on day 3 of pregnancy in the strain tested. The results provide direct biochemical support for previous indirect bioassay indications of the presence in uterine fluid of a proteolytic factor of uterine origin. The quantitative changes observed here are also consistent with previous bioassay observations and with the hypothesis that the uterine proteinase may mediate initial attachment of the blastocyst to the uterine wall. These and other data are used to formulate a 2-stage hypothesis of implantation, according to which uterine and trophoblast proteinases act sequentially to cause attachment and invasion, respectively.  相似文献   
272.
A remarkable example of a misleading mitochondrial protein tree is presented, involving ray-finned fishes, coelacanths, lungfishes, and tetrapods, with sea lampreys as an outgroup. In previous molecular phylogenetic studies on the origin of tetrapods, ray-finned fishes have been assumed as an outgroup to the tetrapod/lungfish/coelacanth clade, an assumption supported by morphological evidence. Standard methods of molecular phylogenetics applied to the protein-encoding genes of mitochondria, however, give a bizarre tree in which lamprey groups with lungfish and, therefore, ray-finned fishes are not the outgroup to a tetrapod/lungfish/coelacanth clade. All of the dozens of published phylogenetic methods, including every possible modification to maximum likelihood known to us (such as inclusion of site heterogeneity and exclusion of potentially misleading hydrophobic amino acids), fail to place the ray-finned fishes in a biologically acceptable position. A likely cause of this failure may be the use of an inappropriate outgroup. Accordingly, we have determined the complete mitochondrial DNA sequence from the shark, Mustelus manazo, which we have used as an alternative and more proximal outgroup than the lamprey. Using sharks as the outgroup, lungfish appear to be the closest living relative of tetrapods, although the possibility of a lungfish/coelacanth clade being the sister group of tetrapods cannot be excluded.   相似文献   
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Siblings compete for parental care and feeding, while parents must allocate scarce resources to those offspring most likely to survive and reproduce. This could cause offspring to evolve traits that advertise health, and thereby attract parental resources. For example, experimental evidence suggests that bright orange filaments covering the heads of North American coot chicks may have evolved for this fitness-advertising purpose. Could any human mental disorders be the equivalent of dull filaments in coot chicks—low-fitness extremes of mental abilities that evolved as fitness indicators? One possibility is autism. Suppose that the ability of very young children to charm their parents evolved as a parentally selected fitness indicator. Young children would vary greatly in their ability to charm parents, that variation would correlate with underlying fitness, and autism could be the low-fitness extreme of this variation. This view explains many seemingly disparate facts about autism and leads to some surprising and testable predictions.  相似文献   
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Background  

Leucine-rich repeats are one of the more common modules found in proteins. The leucine-rich repeat consensus motif is LxxLxLxxNxLxxLxxLxxLxx- where the first 11–12 residues are highly conserved and the remainder of the repeat can vary in size Leucine-rich repeat proteins have been subdivided into seven subfamilies, none of which include members of the epidermal growth factor receptor or insulin receptor families despite the similarity between the 3D structure of the L domains of the type I insulin-like growth factor receptor and some leucine-rich repeat proteins.  相似文献   
279.
Cell surface antigens on mouse embryonal carcinoma (or teratocarcinoma) cells were investigated by means of a syngeneic antiserum prepared against small-size embryoid bodies from the ascites form of the OTT 6050 transplantable teratoma. These embryoid bodies consist of embryonal carcinoma cells which are usually covered by a yolk-sac-like epithelium. The choice of immunogen was based on the previous demonstration [Mintz, B., and Illmensee, K. (1975) Proc. Nat. Acad. Sci. USA72, 3585–3589] that embryonal carcinoma cells from this specific source are euploid, developmentally totipotent, and completely reversible to normalcy. In indirect immunofluorescence tests, anti-embryoid-body serum reacted with both cell types of the immunogen and with two in vitro lines of embryonal carcinoma cells. Absorption of antiserum with a pure yolk sac carcinoma derived from the epithelial component of the embryoid bodies enabled assessment of reactivity with the embryonal carcinoma component of the immunogen: The absorption revealed that some antigens recognized on the embryonal carcinoma cells were shared by the yolk sac epithelial cells but that some antigens were present only on the embryonal carcinoma cells. The antigens were not shared by sperm, which failed to fluoresce with unabsorbed antiserum and were ineffective when tested as absorbents of antiserum reactivity against embryoid body target cells. Unfertilized eggs also failed to fluoresce. Preimplantation embryos gave immunofluorescence evidence of some antigens shared with embryonal carcinoma cells (and some with yolk sac cells) during cleavage, and in the blastocyst on both inner cell mass and trophoblast. Postimplantation embryos were also antigen-positive (at least through Day 6) in immunofluorescence tests on endoderm as well as ectoderm cells. Absorption of the antiserum with various normal adult tissues showed substantial cross-reactivity, especially with ovary and testis. Other tumors were tested, but only hepatoma cells grown in vitro were reactive, thereby indicating lack of any general tumor recognition in the antiserum. The above results with syngeneic immunizations demonstrate that known totipotent teratocarcinoma cells possess surface molecules which, while not universal on normal cells or tumors, are shared with many other tissues, including developmentally plastic cells of early embryos, developmentally restricted cells of later embryos, and various adult tissues. Immunofluorescence tests of cleavage-stage (Day 2) embryos from matings of +t12 × +t12 heterozygotes, yielding 40% mutant t12t12 homozygotes lethal on Day 3, were uniformly positive on all the embryos, including mutants and normals. Therefore, under these conditions, no evidence was adduced to support the hypothesis that surface components required for normal early development might be coded by the wild-type allele of t12.  相似文献   
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