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ATP hydrolytic activity in whole cell homogenates of some protozoa was assayed in the presence or absence of dithiothreitol. The activities in all protozoan cell homogenates, except Toxoplasma gondii, ranged from 0.6 to 32 mumol/mg protein/hr, irrespective of the presence or absence of dithiothreitol. A remarkably higher activity, 11,690 mumol/mg protein/hr, was observed for T. gondii in the presence of dithiothreitol. These results indicate that the higher ATP hydrolytic potency observed for T. gondii is not universal to protozoa, rather it is unique to T. gondii.  相似文献   
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Lymphocyte entry into lymph nodes and Peyer's patches is initiated by the adhesion of the lymphocytes to specialized postcapillary high endothelial venules (HEV). The binding of lymphocytes to lymph node HEV is mediated by the cell surface receptor gp90MEL-14 (gp90). Previous work has shown that gp90 is down-regulated over a period of days after mitogenic or mixed lymphocyte reaction stimulation of T lymphocytes. In our study, it is shown that stimulation of lymphocytes with activators of protein kinase C (PKC), such as PMA or 1-oleoyl 2-acetyl-glycerol, results in the nearly complete loss of surface expression of gp90 within 1 h. Pretreatment of the cells with H-7 or staurosporine, PKC inhibitors, but not HA1004, a general protein kinase inhibitor, prevents the loss of gp90MEL-14. Within 15 min of stimulation of PKC, a novel form of gp90 can be immunoprecipitated from the supernatant of stimulated cells. Upon deglycosylation, this soluble gp90 polypeptide is shown to be 12 kDa smaller than the cell surface protein. Peptide mapping showed identical patterns for surface and soluble receptor, confirming that the soluble Ag is related to the cell membrane protein. Together, these experiments suggest that activation of PKC results in the proteolytic cleavage of gp90MEL-14, resulting in receptor shedding and the inability of the lymphocytes to adhere to HEV endothelium. Furthermore, because supernatant from unstimulated, normal lymphocytes also contains a small amount of the low Mr form of gp90, cell surface proteolysis may be part of the normal turnover of this receptor glycoprotein. These experiments suggest that PKC may play a role in the regulation of lymphocyte traffic to lymphoid tissues.  相似文献   
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Summary It has been previously recognized that a number of protocols may cause breakage of the triad junction and separation of the constituent organelles of skeletal muscle. We now describe a fraction of triad junctions which is refractory to the known protocols for disruption. Triads were passed through a French press and the dissociated organelles were separated on a sucrose density gradient, which was assayed for PN200-110, ouabain and ryanodine binding. Ryanodine binding showed a single peak at the density of heavy terminal cisternae. On the other hand, the PN200-110 and ouabain, which are external membrane ligands, bound in two peaks: one at the free transverse tubule region and the other at the light terminal cisternae. Similarly, a two peak pattern of PN200-110 and ouabain binding was observed when triad junctions were broken by the Ca2+-dependent protease, calpain, which selectively hydrolyzes the junctional foot protein. The light terminal cisternae vesicles were subjected to three different procedures of junctional breakage: French press, hypertonic salt treatment, and protease digestion using calpain or trypsin. The treated membranes were then centrifuged on density gradients. Only extensive trypsin digestion caused a partial shift of ouabain activity into the free transverse tubule region. These observations suggest that the triads are a composite mixture of breakage susceptible, weak, and breakage resistant, strong, triads. Scatchard analysis of PN200-110 suggests that the transverse tubules of strong triads contain a relatively high number of dihydropyridine receptors compared to those of weak triads. Thin section electron microscopic images of the strong triads comparable to those of intact muscle are presented.  相似文献   
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Bovine oocytes obtained from ovarian follicles (2 to 5 mm in diameter) from slaughtered cattle were cultured in TCM199 with 10% heat-inactivated estrous cow serum (ECS) for 24 to 25 h at 39 degrees C under 5% CO(2) in air. The 10% ECS was selected on the basis of preliminary studies in which in vitro fertilization rates of oocytes with 10, 15 and 20% ECS in the medium were 46, 30 and 31%, respectively (P<0.05). Of 120 oocytes cultured for 24 to 25 h, 63% were classified as being in Metaphase II. The rate of oocytes matured in vitro was 55% (69 125 ), the proportion of penetrated oocytes which contained male and female pronuclei was 94% (65 69 ), and the incidence of polyspermy was very low (0 to 9%). Of 122 oocytes fertilized in vitro and cultured in TCM199 medium with 10% fetal bovine serum for 7 d, 53% were cleaved, but only 2% developed beyond the 16-cell block. However, in simple semi-defined Chatot-Ziomek-Bavister medium co-cultured with bovine oviduct epithelial cells (BOEC), 75% of 138 oocytes cleaved, and 38% of those which cleaved developed into morulae or blastocysts. The results of this study indicate that co-culture with BOEC exerted a pronounced beneficial effect on development of in vitro fertilized bovine oocytes through the 16-cell block. The medium required in the co-culture system was simple and semi-defined.  相似文献   
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Ricin A chain is an N-glycosidase which removes a single adenine base from a conservative loop of 28S rRNA, thereby inactivating eukaryotic ribosomes. The mechanism of action has been proposed to include transition-state stabilization of an oxycarbonium ion on the substrate ribose by interaction with Glu 177. Conversion of Glu 177 to Gln reduces activity nearly 200-fold [Ready, M. P., Kim, Y., & Robertus, J. D. (1991) Proteins: Struct., Funct., Genet. 10, 270-278] while conversion to Ala (E177A) reduces activity only 20-fold [Schlossman, D., Withers, D., Welsh, P., Alexander, A., Robertus, J., & Frankel, A. (1989) Mol. Cell. Biol. 9, 5012-5021]. X-ray analysis of the latter mutant protein shows that a residue at the edge of the active site, Glu 208, rotates into the space left vacant by the mutation. Its rearranged carboxylate partially substitutes for that of Glu 177. This is equivalent to the rescue of enzyme activity by a second-site reversion. Kinetic analysis shows the E177A mutation affects kcat and not Km, consistent with the notion that the carboxylate serves in transition-state stabilization.  相似文献   
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