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首页> 外文期刊>The biochemical journal >Localization and identification of Ca2+ATPases in highly purified human platelet plasma and intracellular membranes. Evidence that the monoclonal antibody PL/IM 430 recognizes the SERCA 3 Ca2+ATPase in human platelets
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Localization and identification of Ca2+ATPases in highly purified human platelet plasma and intracellular membranes. Evidence that the monoclonal antibody PL/IM 430 recognizes the SERCA 3 Ca2+ATPase in human platelets

机译:Ca2 + ATPase在高纯度人血小板血浆和细胞内膜中的定位和鉴定。单克隆抗体PL / IM 430识别人血小板中的SERCA 3 Ca2 + ATPase的证据

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pThe Ca2+ATPase activities of highly purified human platelet membranes prepared by high-voltage free-flow electrophoresis have been analysed by using [gamma-32P]ATP hydrolysis, recognition by antibodies and phosphoenzyme-complex formation. The Ca2+ATPase activity present in mixed membranes was found to be predominantly associated with intracellular membranes after subfractionation, with only a low level of activity associated with plasma membranes. The intracellular-membrane Ca2+ATPase activity was inhibited totally with thapsigargin (Tg), whereas the plasma-membrane Ca2+ATPase was not significantly affected, suggesting that the latter does not belong to the SERCA (sarco-endoplasmic-reticulum Ca2+ATPase) class. A monoclonal antibody, 5F10, raised to the red-cell membrane Ca2+ATPase [Cheng, Magocsi, Cooper, Penniston and Borke (1993) Cell Physiol. Biochem. 4, 31-43] recognized two bands at 135 and 150 kDa in mixed membranes and plasma membranes, and the corresponding bands in red-blood-cell membranes, confirming the Ca2+ATPase to be of the PMCA (plasma-membrane Ca2+ATPase) type. No recognition of any band was detected in intracellular membranes. Identification of the intracellular-membrane Ca2+ATPase activity was carried out with polyclonal antibodies with known specificity towards SERCA 2b (S.2b) and SERCA 3 (N89), and a monoclonal antibody, PL/IM 430, raised against platelet intracellular membranes. All of these antibodies recognized the 100 kDa Ca2+ATPase in mixed membranes and intracellular membranes, with little or no recognition of the activity in the plasma membranes. In some membrane preparations the antibody PL/IM 430 and antiserum N89 recognized similar degradation products, of 74, 70 and 40 kDa, in the intracellular-membrane fraction. The Ca2+ATPase recognized by PL/IM 430 was immunoprecipitated, and the immunoprecipitated protein was specifically recognized by the antiserum N89, but not by S.2b. Analysis of the phosphoenzyme-complex formation revealed potent phosphorylation of the 100 and 74 kDa peptides, both recognized by PL/IM 430 and N89. These studies report the presence of a PMCA in a purified plasma-membrane fraction from human platelets, and that the antibody PL/IM 430 recognizes the SERCA 3 Ca2+ATPase in intracellular membranes./p
机译:通过使用[γ-32P] ATP水解,抗体识别和磷酸酶复合物形成,分析了通过高压自由流动电泳制备的高纯度人血小板膜的Ca2 + ATPase活性。细分后,发现混合膜中存在的Ca2 + ATPase活性主要与细胞内膜有关,而与质膜的活性却很低。 thapsigargin(Tg)完全抑制了细胞膜内Ca2 + ATPase的活性,而血浆膜Ca2 + ATPase并未受到显着影响,这表明后者不属于SERCA(肌膜-内质网Ca2 + ATPase)类。单克隆抗体5F10产生于红细胞膜Ca2 + ATPase [Cheng,Magocsi,Cooper,Penniston和Borke(1993)Cell Physiol。生化。 [4,31-43]在混合膜和质膜中分别识别了在135和150 kDa处的两个条带,以及在红细胞膜中识别出相应的条带,从而确认Ca2 + ATPase属于PMCA(质膜Ca2 + ATPase )类型。在细胞内膜中未检测到任何条带的识别。用对SERCA 2b(S.2b)和SERCA 3(N89)具有已知特异性的多克隆抗体,以及针对血小板内膜的单克隆抗体PL / IM 430进行细胞内膜Ca2 + ATPase活性的鉴定。所有这些抗体都识别混合膜和细胞内膜中的100 kDa Ca2 + ATPase,很少或没有识别出质膜中的活性。在某些膜制剂中,抗体PL / IM 430和抗血清N89在细胞内膜部分识别出相似的降解产物,分别为74、70和40 kDa。 PL / IM 430识别的Ca2 + ATPase进行了免疫沉淀,并且该免疫沉淀的蛋白质被抗血清N89特异性识别,但未被S.2b识别。磷酸酶复合物形成的分析揭示了100和74 kDa肽的有效磷酸化,两者均被PL / IM 430和N89识别。这些研究报道了人血小板纯化血浆膜中存在PMCA,并且PL / IM 430抗体识别细胞内膜中的SERCA 3 Ca2 + ATPase。

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