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苯丙氨酸羟化酶多聚化所需结构域的结构/功能分析

Structure/function analysis of the domains required for the multimerisation of phenylalanine hydroxylase.

作者信息

Hufton S E, Jennings I G, Cotton R G

机构信息

Mutation Research Centre, St. Vincent's Hospital, Fitzroy, Vic., Australia.

出版信息

Biochim Biophys Acta. 1998 Feb 17;1382(2):295-304. doi: 10.1016/s0167-4838(97)00171-4.

Abstract

Phenylalanine hydroxylase (PAH) exists as an equilibrium of dimers and tetramers. However, there is little information concerning the inter- or intra-molecular interactions required for enzyme quaternary structure. It is predicted that the formation of a PAH tetramer will require at least two points of contact per enzyme subunit. Sequence analysis has suggested the existence of a C-terminal domain with characteristics of a leucine zipper or a variant of this called a coiled-coil. By deletion of 24 amino acids from the C-terminus or conversion of leucine 448 to an alanine residue, we have shown that this putative leucine zipper/coiled-coil domain is involved in the assembly of an active enzyme tetramer from dimers. The removal of this C-terminal domain of PAH reduces enzyme activity but does not abolish it. Furthermore, we report that an alanine 447 to aspartate mutation associated with phenylketonuria may affect subunit assembly which suggests the formation of enzyme tetramers is physiologically relevant. Our analysis of subunit interactions in vivo, show that in the absence of the C-terminal coiled-coil domain, dimers can form and this is only possible when the N-terminal domain is present. This provides the first evidence that N-terminal domain is required for multimerisation. We propose that the N-terminal regulatory domain in conjunction with the C-terminal coiled-coil domain, mediates the formation of fully active enzyme tetramers.

摘要

苯丙氨酸羟化酶(PAH)以二聚体和四聚体的平衡状态存在。然而,关于酶四级结构所需的分子间或分子内相互作用的信息却很少。据推测,PAH四聚体的形成每个酶亚基至少需要两个接触点。序列分析表明存在一个具有亮氨酸拉链特征或其变体(称为卷曲螺旋)的C末端结构域。通过从C末端缺失24个氨基酸或将亮氨酸448转化为丙氨酸残基,我们已经表明这个假定的亮氨酸拉链/卷曲螺旋结构域参与了由二聚体组装活性酶四聚体的过程。去除PAH的这个C末端结构域会降低酶活性,但不会使其完全丧失。此外,我们报道与苯丙酮尿症相关的丙氨酸447到天冬氨酸的突变可能会影响亚基组装,这表明酶四聚体的形成在生理上是相关的。我们对体内亚基相互作用的分析表明,在没有C末端卷曲螺旋结构域的情况下,二聚体可以形成,而这只有在存在N末端结构域时才有可能。这提供了第一个证据,即N末端结构域是多聚化所必需的。我们提出,N末端调节结构域与C末端卷曲螺旋结构域共同介导了完全活性酶四聚体的形成。

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