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多巴脱羧酶辅酶结合口袋中残基的突变。对催化特性的影响。

Mutation of residues in the coenzyme binding pocket of Dopa decarboxylase. Effects on catalytic properties.

作者信息

Bertoldi M, Castellani S, Bori Voltattorni C

机构信息

Dipartimento di Scienze Neurologiche e della Visione, Sezione di Chimica Biologica, Facoltà di Medicina e Chirurgia, Università degli Studi di Verona, Strada Le Grazie, Verona, Italy.

出版信息

Eur J Biochem. 2001 May;268(10):2975-81. doi: 10.1046/j.1432-1327.2001.02187.x.

Abstract

Residues D271, H192, H302 and N300 of L-3,4-dihydroxyphenylalanine decarboxylase (DDC), a homodimeric pyridoxal 5'-phosphate (PLP) enzyme, were mutated in order to acquire information on the catalytic mechanism. These residues are potential participants in catalysis because they belong to the common PLP-binding structural motif of group I, II and III decarboxylases and other PLP enzymes, and because they are among the putative active-site residues of structural modelled rat liver DDC. The spectroscopic features of the D271E, H192Q, H302Q and N300A mutants as well as their dissociation constants for PLP suggest that substitution of each of these residues causes alteration of the state of the bound coenzyme molecule and of the conformation of aromatic amino acids, possibly in the vicinity of the active site. This supports, but does not prove, the possibility that these residues are located in the coenzyme-binding cleft. Interestingly, mutation of each residue generates an oxidative decarboxylase activity towards L-3,4-dihydroxyphenylalanine (L-Dopa), not inherent in the wild-type in aerobiosis, and reduces the nonoxidative decarboxylase activity of L-Dopa from 3- to 390-fold. The partition ratio between oxidative and nonoxidative decarboxylation ranges from 5.7 x 10(-4) for N300A mutant to 946 x 10(-4) for H302Q mutant. Unlike wild-type enzyme, the mutants catalyse these two reactions to the same extent either in the presence or absence of O2. In addition, all four mutants exhibit an extremely low level of the oxidative deaminase activity towards serotonin with respect to wild-type. All these findings demonstrate that although D271, H192, H302 and N300 are not essential for catalysis, mutation of these residues alters the nature of catalysis. A possible relationship among the integrity of the PLP cleft, the productive binding of O2 and the transition to a closed conformational state of DDC is discussed.

摘要

L-3,4-二羟基苯丙氨酸脱羧酶(DDC)是一种同二聚体吡哆醛5'-磷酸(PLP)酶,对其D271、H192、H302和N300残基进行了突变,以便获取有关催化机制的信息。这些残基可能参与催化作用,因为它们属于I、II和III组脱羧酶及其他PLP酶常见的PLP结合结构基序,并且它们位于结构模拟的大鼠肝脏DDC的推定活性位点残基之中。D271E、H192Q、H302Q和N300A突变体的光谱特征及其与PLP的解离常数表明,这些残基中的每一个被取代都会导致结合的辅酶分子状态以及芳香族氨基酸构象的改变,可能是在活性位点附近。这支持但并未证明这些残基位于辅酶结合裂隙中的可能性。有趣的是,每个残基的突变都会产生对L-3,4-二羟基苯丙氨酸(L-多巴)的氧化脱羧酶活性,这在野生型需氧生物中并不存在,并且将L-多巴的非氧化脱羧酶活性降低了3至390倍。氧化脱羧与非氧化脱羧之间的分配比范围从N300A突变体的5.7×10⁻⁴到H302Q突变体的946×10⁻⁴。与野生型酶不同,这些突变体在有或没有O₂的情况下催化这两种反应的程度相同。此外,相对于野生型,所有四个突变体对血清素的氧化脱氨酶活性都极低。所有这些发现表明,尽管D271、H192、H302和N300对催化作用并非必不可少,但这些残基的突变会改变催化的性质。文中讨论了PLP裂隙的完整性、O₂的有效结合以及DDC向封闭构象状态转变之间的可能关系。

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