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Structure-function studies of human deoxyhypusine synthase: identification of amino acid residues critical for the binding of spermidine and NAD.

机译:人类脱氧hysupsine合酶的结构功能研究:鉴定对亚精胺和NAD结合至关重要的氨基酸残基。

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摘要

Deoxyhypusine synthase catalyses the first step in the biosynthesis of hypusine [N(epsilon)-(4-amino-2-hydroxybutyl)lysine]. The crystal structure of human deoxyhypusine synthase in complex with NAD revealed four NAD-binding sites per enzyme tetramer, and led to a prediction of the spermidine-binding pocket. We have replaced each of the seven amino acid residues at the predicted spermidine-binding site, and eleven residues that contact NAD, on an individual basis with alanine. Of the amino acid residues at the spermidine site, substitution of Asp-243, Trp-327, His-288, Asp-316 or Glu-323 with alanine caused an almost complete loss of spermidine binding and enzyme activity; only the mutation Tyr-305-->Ala showed partial binding and activity. His-288-->Ala was also deficient in terms of binding NAD. NAD binding was significantly reduced in all of the NAD-site mutant enzymes, except for Glu-137-->Ala, which showed a normal binding of NAD, but was totally lacking in spermidine binding. Of the NAD-site mutant enzymes, Asp-342-->Ala, Asp-313-->Ala and Asp-238-->Ala displayed the lowest binding of NAD. These enzymes and His-288Ala also showed a reduced binding of spermidine, presumably because spermidine binding is dependent on NAD. These findings permit the positive identification of amino acid residues critical for binding of spermidine and NAD, and provide a new insight into the complex molecular interactions involved in the deoxyhypusine synthase reaction.
机译:脱氧hy素合酶催化hy素[N(ε)-(4-氨基-2-羟基丁基)赖氨酸]的生物合成的第一步。与NAD复合的人脱氧苏氨酸合酶的晶体结构显示每个酶四聚体有四个NAD结合位点,并导致对亚精胺结合口袋的预测。我们已经分别用丙氨酸替换了预测的亚精胺结合位点的七个氨基酸残基中的每一个,以及与NAD接触的11个残基。在亚精胺位点的氨基酸残基中,用丙氨酸取代Asp-243,Trp-327,His-288,Asp-316或Glu-323导致亚精胺结合和酶活性几乎完全丧失。只有Tyr-305-> Ala突变显示出部分结合和活性。 His-288-> Ala在结合NAD方面也不足。除Glu-137-> Ala外,所有NAD位点突变酶中的NAD结合均显着降低,Glu-137-> Ala显示NAD正常结合,但完全缺乏亚精胺结合。在NAD位点的突变酶中,Asp-342-> Ala,Asp-313-> Ala和Asp-238-> Ala显示出最低的NAD结合力。这些酶和His-288Ala也显示出亚精胺的结合减少,可能是因为亚精胺的结合依赖于NAD。这些发现可以肯定鉴定对亚精胺和NAD的结合至关重要的氨基酸残基,并为脱氧苏氨酸合酶反应中涉及的复杂分子相互作用提供新的见解。

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