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Structural insights into the γ-lactamase activity and substrate enantioselectivity of an isochorismatase-like hydrolase from Microbacterium hydrocarbonoxydans

机译:结构见解的微生物的hydrooxyoxydans的等轴线酶样水解酶的γ-内酰胺酶活性和底物对映体选择性。

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摘要

(+)-γ-lactamase catalyzes the specific hydrolysis of (+)-γ-lactam out of the racemic γ-lactam (2-Azabicyclo[2.2.1]hept-5-en-3-one) to leave optically pure (−)-γ-lactam, which is the key building block of antiviral drugs such as carbovir and abacavir. However, no structural data has been reported on how the enzymes bind the γ-lactams and achieve their enantioselectivities. We previously identified an isochorismatase-like hydrolase (IHL, Mh33H4-5540) with (+)-γ-lactamase activity, which constitutes a novel family of γ-lactamase. Here, we first discovered that this enzyme actually hydrolyzed both (+)- and (−)-γ-lactam, but with apparently different specificities. We determined the crystal structures of the apo-form, (+)-γ-lactam bound, and (−)-γ-lactam bound forms of the enzyme. The structures showed that the binding sites of both (+) and (−)-γ-lactam resemble those of IHLs, but the “cover” loop conserved in IHLs is lacking in the enzyme, probably resulting in its incomplete enantioselectivity. Structural, biochemical, and molecular dynamics simulation studies demonstrated that the steric clash caused by the binding-site residues, especially the side-chain of Cys111 would reduce the binding affinity of (−)-γ-lactam and possibly the catalytic efficiency, which might explain the different catalytic specificities of the enantiomers of γ-lactam. Our results would facilitate the directed evolution and application of Mh33H4-5540 in antiviral drug synthesis.
机译:(+)-γ-内酰胺酶催化将(+)-γ-内酰胺从外消旋γ-内酰胺(2-Azabicyclo [2.2.1] hept-5-en-3-one)中特异性水解,得到光学纯的( −)-γ-内酰胺,这是抗病毒药物如卡波韦和阿巴卡韦的关键组成部分。但是,没有关于酶如何结合γ-内酰胺并实现其对映选择性的结构数据的报道。我们先前确定了具有(+)-γ-内酰胺酶活性的等轴线酶样水解酶(IHL,Mh33H4-5540),它构成了γ-内酰胺酶的新家族。在这里,我们首先发现该酶实际上水解了(+)-和(-)-γ-内酰胺,但具有明显不同的特异性。我们确定了该酶的脱辅基形式,(+)-γ-内酰胺结合和(-)-γ-内酰胺结合形式的晶体结构。结构表明(+)和(-)-γ-内酰胺的结合位点与IHLs相似,但酶中缺乏IHLs保守的“覆盖”环,可能导致其不完全对映选择性。结构,生化和分子动力学模拟研究表明,结合位点残基,尤其是Cys111的侧链引起的空间碰撞会降低(-)-γ-内酰胺的结合亲和力,并可能降低催化效率,这可能解释了γ-内酰胺对映异构体的不同催化特异性。我们的结果将有助于Mh33H4-5540的定向进化和在抗病毒药物合成中的应用。

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