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首页> 外文期刊>The Biochemical Journal >Structure-based mutational studies of O-acetylserine sulfhydrylase reveal the reason for the loss of cysteine synthase complex formation in Brucella abortus
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Structure-based mutational studies of O-acetylserine sulfhydrylase reveal the reason for the loss of cysteine synthase complex formation in Brucella abortus

机译:O-乙酰碱巯基的结构突变研究揭示了Brucella Abortus中半胱氨酸合酶复合物损失的原因

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摘要

Cysteine biosynthesis takes place via a two-step pathway in bacteria, fungi, plants and protozoan parasites, but not in humans, and hence, the machinery of cysteine biosynthesis is an opportune target for therapeutics. The decameric cysteine synthase complex (CSC) is formed when the C-terminal tail of serine acetyltransferase (SAT) binds in the active site of O-acetylserine sulfydrylase (OASS), playing a role in the regulation of this pathway. Here, we show that OASS from Brucella abortus (BaOASS) does not interact with its cognate SAT C-terminal tail. Crystal structures of native BaOASS showed that residues Gln96 and Tyr125 occupy the active-site pocket and interfere with the entry of the SAT C-terminal tail. The BaOASS (Q96A-Y125A) mutant showed relatively strong binding (K-d = 32.4 mu M) to BaSAT C-terminal peptides in comparison with native BaOASS. The mutant structure looks similar except that the active-site pocket has enough space to bind the SAT C-terminal end. Surface plasmon resonance results showed a relatively strong (7.3 mu M K-d) interaction between BaSAT and the BaOASS (Q96A-Y125A), but no interaction with native BaOASS. Taken together, our observations suggest that the CSC does not form in B. abortus.
机译:半胱氨酸生物合成通过细菌,真菌,植物和原生动物寄生虫的两步途径发生,但在人类中,并且因此,半胱氨酸生物合成的机械是治疗剂的适当靶标。当丝氨酸乙酰转移酶(SAT)的C末端尾部结合在O-乙酰丝氨酸磺基(臭氧)的活性位点,在该途径的调节中起作用时,形成透明半胱氨酸合酶复合物(CSC)。在这里,我们展示了来自Brucella Abortus(Baoass)的缺货不与其同源坐立的C末端尾部相互作用。天然BaoAss的晶体结构表明,残留物GLN96和Tyr125占据了主动部位口袋,并干扰了SAT C末端尾部的入口。与天然BaoAss相比,BaOAS(Q96a-y125a)突变体向斯巴特C末端肽显示出相对强烈的结合(K-D =32.4μm)。突变结构看起来类似,不同之处在于主动站点口袋有足够的空间来绑定SAT C端子端。表面等离子体共振结果显示截止浴和BaoAss(Q96A-Y125A)之间的相对较强(7.3μmk-d)相互作用,但与天然宝族没有相互作用。我们的观察结果表明CSC在B. Abortus中不形成。

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