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Activation of the Dunaliella acidophila plasma membrane H(+)-ATPase by trypsin cleavage of a fragment that contains a phosphorylation site.

机译:通过胰蛋白酶切割包含磷酸化位点的片段来激活嗜酸杜氏菌质膜H(+)-ATPase。

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摘要

Trypsin treatment of purified H(+)-ATPase from plasma membranes of the extreme acidophilic alga Dunaliella acidophila enhances ATP hydrolysis and H+ pumping activities. The activation is associated with an alkaline pH shift, an increase in Vmax, and a decrease in Km(ATP). The activation is correlated with cleavage of the 100-kD ATPase polypeptide to a fragment of approximately 85 kD and the appearance of three minor hydrophobic fragments of 7 to 8 kD, which remain associated with the major 85-kD polypeptide. The N-terminal sequence of the small fragments has partial homology to residues 713 to 741 of Arabidopsis thaliana plasma membrane H(+)-ATPases. Incubation of cells with 32P-labeled orthophosphate (32Pi) results in incorporation of 32P into the ATPase 100-kD polypeptide. Trypsin treatment of the 32Pi-labeled ATPase leads to complete elimination of label from the approximately 85-kD polypeptide. Cleavage of the phosphorylated enzyme with endoproteinase Glu-C (V-8) yields a phosphorylated 12-kD fragment. Peptide mapping comparison between the 100-kD and the trypsinized 85-kD polypeptides shows that the 12-kD fragment is derived from the trypsin-cleaved part of the enzyme. The N-terminal sequence of the 12-kD fragment closely resembles a C-terminal stretch of an ATPase from another Dunaliella species. It is suggested that trypsin activation of the D. acidophila plasma membrane H(+)-ATPase results from elimination of an autoinhibitory domain at the C-terminal end of the enzyme that carries a vicinal phosphorylation site.
机译:从极端嗜酸藻类杜氏嗜酸性菌质膜的胰蛋白酶处理纯化的H(+)-ATPase可增强ATP水解和H +泵送活性。激活与碱性pH值变化,Vmax的增加和Km(ATP)的减少有关。激活与将100-kD ATPase多肽裂解为约85 kD的片段以及出现7-8 kD的三个较小的疏水性片段(仍与主要的85-kD多肽相关)相关。小片段的N末端序列与拟南芥质膜H(+)-ATPases的残基713至741具有部分同源性。将细胞与32P标记的正磷酸盐(32Pi)一起孵育会导致32P掺入ATPase 100-kD多肽中。用胰蛋白酶处理32Pi标记的ATPase可以完全消除大约85 kD多肽中的标记。用内蛋白酶Glu-C(V-8)切割磷酸化酶产生磷酸化的12kD片段。 100-kD和胰蛋白酶处理的85-kD多肽之间的肽图比较显示,12-kD片段衍生自酶的胰蛋白酶切割部分。 12-kD片段的N端序列与另一个杜氏藻的ATPase的C端片段非常相似。有人提出,嗜酸D.胞膜H(+)-ATPase的胰蛋白酶活化是由于消除了带有邻位磷酸化位点的酶的C末端的自抑制域而引起的。

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  • 作者

    Sekler, I; Weiss, M; Pick, U;

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  • 年度 1994
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