首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >The N-terminal region of the plasma membrane Ca~(2+) pump does not separate from the main catalytic fragments after proteolysis
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The N-terminal region of the plasma membrane Ca~(2+) pump does not separate from the main catalytic fragments after proteolysis

机译:蛋白水解后质膜Ca〜(2+)泵的N端区域未与主要催化片段分离

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The purified plasma membrane Ca~(2+) pump (PMCA) was digested with trypsin, and the proteolytic products were identified by immunoblotting with monoclonal antibodies JA9 or 5F10 directed against the extreme N-terminal segment and the central portion of the molecule, respectively. After a short treatment with low concentrations of the protease, JA9 reacted predominantly with a peptide of 35 kDa whereas 5F10 detected a peptide of 90 kDa. The trypsin cut leading to the production of these fragments had no effect on the maximal activity of the enzyme. At higher concentrations of trypsin, JA9 detected a main fragment of 33 kDa and smaller fragments of 19 and 15 kDa. The persistence of fragments reacting with JA9 indicates that the N-terminal region containing its epitope (residues 51-75) was not easily accessible to the protease in the native PMCA. However, the reactivity with JA9 with JA9 was rapidly lost during proteolysis of the denatured protein. The passage of the mixture of PMCA fragments through a calmodulin-Sepharose column resulted in the retention of the N-terminal 35 kDa fragment together with that of 90 kDa, despite the fact that only the latter binds calmodulin. The ethylenediaminetetraacetic acid (EDTA) eluate, which contained about equal amounts of both fragments, had a Ca~(2+) ATPase activity similar to that of the intact enzyme. The tight association between the two peptides was evidenced by the fact that concentrations of polyoxyethylene 10 lauryl ether (C_(12)E_(10)), sodium dodecyl sulfate (SDS) high enough for inactivating the enzyme and dissociate the pump from calmodulin were unable of breaking the interaction between the 35 and 90 kDa fragments. Altogether, these results show that after digestion with trypsin, the N-terminal portion of the PMCA, including the extreme N-terminal segment, remains part of a fully functional catalytic complex.
机译:纯化的质膜Ca〜(2+)泵(PMCA)用胰蛋白酶消化,蛋白水解产物通过分别针对分子极端N末端片段和中心部分的单克隆抗体JA9或5F10免疫印迹进行鉴定。 。用低浓度的蛋白酶短暂处理后,JA9主要与35 kDa的肽反应,而5F10检测到90 kDa的肽。导致这些片段产生的胰蛋白酶切割对酶的最大活性没有影响。在较高的胰蛋白酶浓度下,JA9检测到一个33 kDa的主要片段,以及19和15 kDa的较小片段。与JA9反应的片段的持久性表明,天然PMCA中的蛋白酶不容易接近包含其表位的N末端区域(残基51-75)。但是,在变性蛋白的蛋白水解过程中,JA9与JA9的反应性迅速丧失。 PMCA片段混合物通过钙调蛋白-琼脂糖柱的通过导致保留了N端35 kDa片段和90 kDa的片段,尽管事实上只有后者与钙调蛋白结合。含有大约相等量的两个片段的乙二胺四乙酸(EDTA)洗脱液具有与完整酶相似的Ca〜(2+)ATPase活性。事实证明,足够高的聚氧乙烯10月桂基醚(C_(12)E_(10)),十二烷基硫酸钠(SDS)浓度足以使酶失活并使泵与钙调蛋白解离,这一事实证明了这两种肽之间的紧密结合。打破了35和90 kDa片段之间的相互作用。总而言之,这些结果表明,用胰蛋白酶消化后,PMCA的N端部分(包括最末端的N端部分)仍然是功能齐全的催化复合物的一部分。

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