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评估大豆β-取代丙氨酸合酶酶家族的功能多样性。

Assessing functional diversity in the soybean β-substituted alanine synthase enzyme family.

机构信息

Department of Biology, Washington University in St. Louis, One Brookings Drive, Campus Box 1137, St. Louis, MO 63130, USA.

出版信息

Phytochemistry. 2012 Nov;83:15-24. doi: 10.1016/j.phytochem.2012.08.003. Epub 2012 Sep 15.

Abstract

In plants, proteins of the β-substituted alanine synthase (BSAS) enzyme family perform a diverse range of reactions, including formation of cysteine from O-acetylserine and sulfide, detoxification of cyanide by its addition to cysteine, the breakdown of cysteine into pyruvate, ammonia, and sulfide, and the synthesis of S-sulfocysteine. With the completed genome sequence of soybean (Glycine max (L.) Merr. cv. Williams 82), the functional diversity of the BSAS in this highly duplicated plant species was examined to determine whether soybean BSAS enzymes catalyze the various reactions connected to cysteine metabolism. The 16 soybean BSAS can be grouped into clades that are similar to those observed in Arabidopsis. Biochemical analysis of soybean BSAS proteins demonstrate that enzymes of clades I and III function as O-acetylserine sulfhydrylases for cysteine synthesis, clade II encodes cysteine desulfhydrase activity, and that clade V proteins function as β-cyanoalanine synthase for cyanide detoxification. Although clade IV is similar to Arabidopsis S-sulfocysteine synthase, this activity was not detected in the soybean homolog. Overall, our results show that bioinformatics approach provides a useful method to assess the biochemical properties of BSAS enzymes in plant species.

摘要

在植物中,β-取代丙氨酸合酶(BSAS)酶家族的蛋白质执行各种反应,包括将 O-乙酰丝氨酸和硫转化为半胱氨酸、通过将氰化物添加到半胱氨酸中来解毒氰化物、将半胱氨酸分解为丙酮酸、氨和硫以及合成 S-磺基半胱氨酸。随着大豆(Glycine max (L.) Merr. cv. Williams 82)基因组序列的完成,研究了这种高度重复植物物种中 BSAS 的功能多样性,以确定大豆 BSAS 酶是否催化与半胱氨酸代谢相关的各种反应。16 种大豆 BSAS 可以分为与拟南芥中观察到的相似的聚类。对大豆 BSAS 蛋白的生化分析表明,聚类 I 和 III 的酶作为半胱氨酸合成的 O-乙酰丝氨酸硫基转移酶发挥作用,聚类 II 编码半胱氨酸脱巯基酶活性,聚类 V 蛋白作为氰化物解毒的β-氰基丙氨酸合酶发挥作用。尽管聚类 IV 与拟南芥 S-磺基半胱氨酸合酶相似,但在大豆同源物中未检测到这种活性。总体而言,我们的结果表明,生物信息学方法为评估植物物种中 BSAS 酶的生化特性提供了一种有用的方法。

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