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首页> 外文期刊>The Biochemical Journal >Functional domain organization of the potato alpha-glucan, water dikinase (GWD): evidence for separate site catalysis as revealed by limited proteolysis and deletion mutants
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Functional domain organization of the potato alpha-glucan, water dikinase (GWD): evidence for separate site catalysis as revealed by limited proteolysis and deletion mutants

机译:马铃薯α-葡聚糖,水二激酶(GWD)的功能结构域组织:有限的蛋白水解和缺失突变体揭示了单独位点催化的证据

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摘要

The potato tuber (Solanum tuberosum) GWD (alpha-glucan, water dikinase) catalyses the phosphorylation of starch by a dikinase-type reaction mechanism in which the beta-phosphate of ATP is transferred to the glucosyl residue of amylopectin. GWD shows sequence similarity to bacterial pyruvate, water dikinase and PPDK (pyruvate, phosphate dikinase). In the present study, we examine the structure-function relationship of GWD. Analysis of proteolytic fragments of GWD, in conjunction with peptide microsequencing and the generation of deletion mutants, indicates that GWD is comprised of five discrete domains of 37, 24, 21, 36 and 38 kDa. The catalytic histidine, which mediates the phosphoryl group transfer from ATP to starch, is located on the 36 kDa fragment, whereas the 38 kDa C-terminal fragment contains the ATP-binding site. Binding of the glucan molecule appears to be confined to regions containing the three N-terminal domains. Deletion mutants were generated to investigate the functional interdependency of the putative ATP- and glucan-binding domains. A truncated form of GWD expressing the 36 and 38 kDa C-terminal domains was found to catalyse the E + ATP --> E-P + AMP + P-i (where P-i stands for orthophosphate) partial reaction, but not the E-P + glucan --> E + glucan-P partial reaction. CD experiments provided evidence for large structural changes on autophosphorylation of GWD, indicating that GWD employs a swivelling-domain mechanism for enzymic phosphotransfer similar to that seen for PPDK.
机译:马铃薯块茎(Solanum tuberosum)GWD(α-葡聚糖,水二激酶)通过二激酶型反应机制催化淀粉的磷酸化,其中ATP的β-磷酸转移至支链淀粉的葡萄糖基上。 GWD显示与细菌丙酮酸,水二激酶和PPDK(丙酮酸盐,磷酸二激酶)的序列相似性。在本研究中,我们检查了GWD的结构-功能关系。对GWD的蛋白水解片段进行分析,结合肽微测序和缺失突变体的产生,表明GWD由五个离散的域组成,分别为37、24、21、36和38 kDa。介导磷酸基团从ATP转移到淀粉的催化组氨酸位于36 kDa片段上,而38 kDa C端片段含有ATP结合位点。葡聚糖分子的结合似乎仅限于含有三个N端结构域的区域。产生缺失突变体以研究推定的ATP-和葡聚糖结合结构域的功能相互依赖性。发现表达36和38 kDa C端结构域的截短形式的GWD催化E + ATP-> EP + AMP + Pi(Pi代表正磷酸盐)部分反应,但不催化EP +葡聚糖-> E +葡聚糖-P部分反应。 CD实验为GWD的自磷酸化提供了重大结构变化的证据,表明GWD采用了与PPDK相似的酶促磷酸转移的旋转域机制。

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