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来自大肠杆菌的组氨醇磷酸氨基转移酶(HisC)的晶体结构,以及它与磷酸吡哆醛和L-组氨醇磷酸形成的共价复合物。

Crystal structure of histidinol phosphate aminotransferase (HisC) from Escherichia coli, and its covalent complex with pyridoxal-5'-phosphate and l-histidinol phosphate.

作者信息

Sivaraman J, Li Y, Larocque R, Schrag J D, Cygler M, Matte A

机构信息

Biotechnology Research Institute, 6100 Royalmount Ave., Montreal, H4P 2R2 and, Canada.

出版信息

J Mol Biol. 2001 Aug 24;311(4):761-76. doi: 10.1006/jmbi.2001.4882.

Abstract

The biosynthesis of histidine is a central metabolic process in organisms ranging from bacteria to yeast and plants. The seventh step in the synthesis of histidine within eubacteria is carried out by a pyridoxal-5'-phosphate (PLP)-dependent l-histidinol phosphate aminotransferase (HisC, EC 2.6.1.9). Here, we report the crystal structure of l-histidinol phosphate aminotransferase from Escherichia coli, as a complex with pyridoxamine-5'-phosphate (PMP) at 1.5 A resolution, as the internal aldimine with PLP, and in a covalent, tetrahedral complex consisting of PLP and l-histidinol phosphate attached to Lys214, both at 2.2 A resolution. This covalent complex resembles, in structural terms, the gem-diamine intermediate that is formed transiently during conversion of the internal to external aldimine.HisC is a dimeric enzyme with a mass of approximately 80 kDa. Like most PLP-dependent enzymes, each HisC monomer consists of two domains, a larger PLP-binding domain having an alpha/beta/alpha topology, and a smaller domain. An N-terminal arm contributes to the dimerization of the two monomers. The PLP-binding domain of HisC shows weak sequence similarity, but significant structural similarity with the PLP-binding domains of a number of PLP-dependent enzymes. Residues that interact with the PLP cofactor, including Tyr55, Asn157, Asp184, Tyr187, Ser213, Lys214 and Arg222, are conserved in the family of aspartate, tyrosine and histidinol phosphate aminotransferases. The imidazole ring of l-histidinol phosphate is bound, in part, through a hydrogen bond with Tyr110, a residue that is substituted by Phe in the broad substrate specific HisC enzymes from Zymomonas mobilis and Bacillus subtilis. Comparison of the structures of the HisC internal aldimine, the PMP complex and the HisC l-histidinol phosphate complex reveal minimal changes in protein or ligand structure. Proton transfer, required for conversion of the gem-diamine to the external aldimine, does not appear to be limited by the distance between substrate and lysine amino groups. We propose that the tetrahedral complex has resulted from non-productive binding of l-histidinol phosphate soaked into the HisC crystals, resulting in its inability to be converted to the external aldimine at the HisC active site.

摘要

从细菌到酵母和植物,组氨酸的生物合成是生物体中的一个核心代谢过程。真细菌中组氨酸合成的第七步由依赖于磷酸吡哆醛(PLP)的L-组氨醇磷酸氨基转移酶(HisC,EC 2.6.1.9)催化。在此,我们报道了来自大肠杆菌的L-组氨醇磷酸氨基转移酶的晶体结构,其与磷酸吡哆胺(PMP)形成复合物,分辨率为1.5 Å,作为与PLP的内部醛亚胺,以及在由PLP和与赖氨酸214相连的L-组氨醇磷酸组成的共价四面体复合物中,分辨率均为2.2 Å。从结构角度来看,这种共价复合物类似于在内部醛亚胺向外部醛亚胺转化过程中短暂形成的偕二胺中间体。HisC是一种质量约为80 kDa的二聚体酶。与大多数依赖PLP的酶一样,每个HisC单体由两个结构域组成,一个较大的具有α/β/α拓扑结构的PLP结合结构域和一个较小的结构域。一条N端臂有助于两个单体的二聚化。HisC的PLP结合结构域显示出较弱的序列相似性,但与许多依赖PLP的酶的PLP结合结构域具有显著的结构相似性。与PLP辅因子相互作用的残基,包括酪氨酸55、天冬酰胺157、天冬氨酸184、酪氨酸187、丝氨酸213、赖氨酸214和精氨酸222,在天冬氨酸、酪氨酸和组氨醇磷酸氨基转移酶家族中是保守的。L-组氨醇磷酸的咪唑环部分通过与酪氨酸110形成氢键结合,在运动发酵单胞菌和枯草芽孢杆菌的广泛底物特异性HisC酶中,该残基被苯丙氨酸取代。HisC内部醛亚胺、PMP复合物和HisC L-组氨醇磷酸复合物的结构比较显示,蛋白质或配体结构的变化极小。将偕二胺转化为外部醛亚胺所需的质子转移似乎不受底物与赖氨酸氨基之间距离的限制。我们认为,四面体复合物是由于浸泡在HisC晶体中的L-组氨醇磷酸的非生产性结合导致的,从而使其无法在HisC活性位点转化为外部醛亚胺。

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