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Structural basis for redox sensitivity in Corynebacterium glutamicum diaminopimelate epimerase: an enzyme involved in l-lysine biosynthesis

机译:谷氨酸棒杆菌二氨基庚二酸酯差向异构酶中氧化还原敏感性的结构基础:一种涉及L-赖氨酸生物合成的酶

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摘要

Diaminopimelate epimerase (DapF) is one of the crucial enzymes involved in l-lysine biosynthesis, where it converts l,l-diaminopimelate (l,l-DAP) into d,l-DAP. DapF is also considered as an attractive target for the development of antibacterial drugs. Here, we report the crystal structure of DapF from Corynebacterium glutamicum (CgDapF). Structures of CgDapF obtained under both oxidized and reduced conditions reveal that the function of CgDapF is regulated by redox-switch modulation via reversible disulfide bond formation between two catalytic cysteine residues. Under oxidized condition, two catalytic cysteine residues form a disulfide bond; these same cysteine residues exist in reduced form under reduced condition. Disulfide bond formation also induces a subsequent structural change in the dynamic catalytic loop at the active site, which results in open/closed conformational change at the active site. We also determined the crystal structure of CgDapF in complex with its product d,l-DAP, and elucidated how the enzyme recognizes its substrate l,l-DAP as a substrate. Moreover, the structure in complex with the d,l-DAP product reveals that CgDapF undergoes a large open/closed domain movement upon substrate binding, resulting in a completely buried active site with the substrate bound.
机译:二氨基庚二酸酯差向异构酶(DapF)是参与l-赖氨酸生物合成的关键酶之一,它可以将1,l-二氨基庚二酸酯(l,1-DAP)转化为d,1-DAP。 DapF也被认为是开发抗菌药物的诱人靶标。在这里,我们报道了来自谷氨酸棒杆菌(CgDapF)的DapF的晶体结构。在氧化和还原条件下获得的CgDapF的结构表明,CgDapF的功能通过氧化还原开关调节,通过两个催化半胱氨酸残基之间可逆的二硫键形成来调节。在氧化条件下,两个催化的半胱氨酸残基形成一个二硫键;这些相同的半胱氨酸残基在还原条件下以还原形式存在。二硫键的形成还会在活性位点的动态催化环中引起后续的结构变化,从而导致活性位点的开/闭构象变化。我们还确定了CgDapF及其产物d,1-DAP的晶体结构,并阐明了酶如何识别其底物1,1-DAP作为底物。而且,与d,1-DAP产物复合的结构揭示了CgDapF在底物结合后经历了大的开/闭结构域运动,导致与底物结合的完全掩埋的活性位点。

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