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首页> 外文期刊>Journal of Molecular Biology >X-ray structure of yeast Hal2p, a major target of lithium and sodium toxicity, and identification of framework interactions determining cation sensitivity.
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X-ray structure of yeast Hal2p, a major target of lithium and sodium toxicity, and identification of framework interactions determining cation sensitivity.

机译:酵母Hal2p(锂和钠毒性的主要目标)的X射线结构以及确定阳离子敏感性的构架相互作用的鉴定。

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The product of the yeast HAL2 gene (Hal2p) is an in vivo target of sodium and lithium toxicity and its overexpression improves salt tolerance in yeast and plants. Hal2p is a metabolic phosphatase which catalyses the hydrolysis of 3'-phosphoadenosine-5'-phosphate (PAP) to AMP. It is, the prototype of an evolutionarily conserved family of PAP phosphatases and the engineering of sodium insensitive enzymes of this group may contribute to the generation of salt-tolerant crops. We have solved the crystal structure of Hal2p in complex with magnesium, lithium and the two products of PAP hydrolysis, AMP and Pi, at 1.6 A resolution. A functional screening of random mutations of the HAL2 gene in growing yeast generated forms of the enzyme with reduced cation sensitivity. Analysis of these mutants defined a salt bridge (Glu238 ellipsis Arg152) and a hydrophobic bond (Va170 ellipsis Trp293) as important framework interactions determining cation sensitivity. Hal2p belongs to a larger superfamily of lithium-sensitive phosphatases which includes inositol monophosphatase. The hydrophobic interaction mutated in Hal2p is conserved in this superfamily and its disruption in human inositol monophosphatase also resulted in reduced cation sensitivity. Copyright 2000 Academic Press.
机译:酵母HAL2基因的产物(Hal2p)是钠和锂毒性的体内靶标,其过表达提高了酵母和植物的耐盐性。 Hal2p是一种代谢磷酸酶,可催化3'-磷酸腺苷-5'-磷酸(PAP)水解为AMP。它是PAP磷酸酶进化上保守的家族的原型,而该钠不敏感酶的工程改造可能有助于耐盐作物的产生。我们已经解决了Hal2p与镁,锂和PAP水解的两种产物AMP和Pi的复合物的晶体结构,分辨率为1.6A。在生长中的酵母中对HAL2基因的随机突变进行功能筛选可产生具有降低的阳离子敏感性的酶形式。这些突变体的分析将盐桥(Glu238椭圆Arg152)和疏水键(Va170椭圆Trp293)定义为决定阳离子敏感性的重要构架相互作用。 Hal2p属于较大的锂敏感磷酸酶超家族,其中包括肌醇单磷酸酶。 Hal2p中突变的疏水相互作用在该超家族中得以保留,其在人肌醇单磷酸酶中的破坏也导致阳离子敏感性降低。版权所有2000学术出版社。

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