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来自流感嗜血杆菌(HI0827)的YciA的结构,一种六聚体广谱特异性酰基辅酶A硫酯酶。

Structure of YciA from Haemophilus influenzae (HI0827), a hexameric broad specificity acyl-coenzyme A thioesterase.

作者信息

Willis Mark A, Zhuang Zhihao, Song Feng, Howard Andrew, Dunaway-Mariano Debra, Herzberg Osnat

机构信息

Center for Advanced Research in Biotechnology, W. M. Keck Laboratory for Structural Biology, University of Maryland Biotechnology Institute, Rockville, Maryland 20850, USA.

出版信息

Biochemistry. 2008 Mar 4;47(9):2797-805. doi: 10.1021/bi702336d. Epub 2008 Feb 9.

Abstract

The crystal structure of HI0827 from Haemophilus influenzae Rd KW20, initially annotated "hypothetical protein" in sequence databases, exhibits an acyl-coenzyme A (acyl-CoA) thioesterase "hot dog" fold with a trimer of dimers oligomeric association, a novel assembly for this enzyme family. In studies described in the preceding paper [Zhuang, Z., Song, F., Zhao, H., Li, L., Cao, J., Eisenstein, E., Herzberg, O., and Dunaway-Mariano, D. (2008) Biochemistry 47, 2789-2796], HI0827 is shown to be an acyl-CoA thioesterase that acts on a wide range of acyl-CoA compounds. Two substrate binding sites are located across the dimer interface. The binding sites are occupied by two CoA molecules, one with full occupancy and the second only partially occupied. The CoA molecules, acquired from HI0827-expressing Escherichia coli cells, remained tightly bound to the enzyme through the protein purification steps. The difference in CoA occupancies indicates a different substrate affinity for each of the binding sites, which in turn implies that the enzyme might be subject to allosteric regulation. Mutagenesis studies have shown that the replacement of the putative catalytic carboxylate Asp44 with an alanine residue abolishes activity. The impact of this mutation is seen in the crystal structure of D44A HI0827. Whereas the overall fold and assembly of the mutant protein are the same as those of the wild-type enzyme, the CoA ligands are absent. The dimer interface is perturbed, and the channel that accommodates the thioester acyl chain is more open and wider than that observed in the wild-type enzyme. A model of intact substrate bound to wild-type HI0827 provides a structural rationale for the broad substrate range.

摘要

来自流感嗜血杆菌Rd KW20的HI0827的晶体结构,最初在序列数据库中注释为“假定蛋白”,呈现出酰基辅酶A(酰基-CoA)硫酯酶的“热狗”折叠结构,具有二聚体三聚体的寡聚缔合,这是该酶家族的一种新型组装形式。在前一篇论文[Zhuang, Z., Song, F., Zhao, H., Li, L., Cao, J., Eisenstein, E., Herzberg, O., and Dunaway-Mariano, D. (2008) Biochemistry 47, 2789 - 2796]中描述的研究表明,HI0827是一种作用于多种酰基-CoA化合物的酰基-CoA硫酯酶。两个底物结合位点位于二聚体界面两侧。结合位点被两个CoA分子占据,一个完全占据,另一个仅部分占据。从表达HI0827的大肠杆菌细胞中获得的CoA分子,在蛋白质纯化步骤中仍与酶紧密结合。CoA占据情况的差异表明每个结合位点对底物的亲和力不同,这反过来意味着该酶可能受到变构调节。诱变研究表明,将假定的催化羧酸盐Asp44替换为丙氨酸残基会使活性丧失。这种突变的影响在D44A HI0827的晶体结构中可见。虽然突变蛋白的整体折叠和组装与野生型酶相同,但CoA配体不存在。二聚体界面受到干扰,容纳硫酯酰基链的通道比野生型酶中观察到的更开放、更宽。与野生型HI0827结合的完整底物模型为广泛的底物范围提供了结构依据。

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