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钙离子在转谷氨酰胺酶3的激活及活性中的作用。

Roles of calcium ions in the activation and activity of the transglutaminase 3 enzyme.

作者信息

Ahvazi Bijan, Boeshans Karen M, Idler William, Baxa Ulrich, Steinert Peter M

机构信息

Laboratory of Skin Biology, the Laboratory of X-ray Crystallography/Office of Science and Technology, National Institute of Health, Bethesda, Maryland 20892-8023, USA.

出版信息

J Biol Chem. 2003 Jun 27;278(26):23834-41. doi: 10.1074/jbc.M301162200. Epub 2003 Apr 4.

Abstract

The transglutaminase 3 enzyme is widely expressed in many tissues including epithelia. We have shown previously that it can bind three Ca2+ ions, which in site one is constitutively bound, while those in sites two and three are acquired during activation and are required for activity. In particular, binding at site three opens a channel through the enzyme and exposes two tryptophan residues near the active site that are thought to be important for enzyme reaction. In this study, we have solved the structures of three more forms of this enzyme by x-ray crystallography in the presence of Ca2+ and/or Mg2+, which provide new insights on the precise contribution of each Ca2+ ion to activation and activity. First, we found that Ca2+ ion in site one can be exchanged with difficulty, and it has a binding affinity of Kd = 0.3 microm (DeltaH = -6.70 +/- 0.52 kcal/mol), which suggests it is important for the stabilization of the enzyme. Site two can be occupied by some lanthanides but only Ca2+ of the Group 2 family of alkali earth metals, and its occupancy are required for activity. Site three can be occupied by some lanthanides, Ca2+,or Mg2+; however, when Mg2+ is present, the enzyme is inactive, and the channel is closed. Thus Ca2+ binding in both sites two and three cooperate in opening the channel. We speculate that manipulation of the channel opening could be controlled by intracellular cation levels. Together, these data have important implications for reaction mechanism of the enzyme: the opening of a channel perhaps controls access to and manipulation of substrates at the active site.

摘要

转谷氨酰胺酶3在包括上皮组织在内的许多组织中广泛表达。我们之前已经表明,它可以结合三个钙离子,其中位点一的钙离子是组成性结合的,而位点二和三位点的钙离子是在激活过程中获得的,并且是活性所必需的。特别地,位点三的结合会打开酶上的一个通道,并暴露出活性位点附近的两个色氨酸残基,这两个残基被认为对酶反应很重要。在本研究中,我们通过X射线晶体学在存在钙离子和/或镁离子的情况下解析了该酶另外三种形式的结构,这为每个钙离子对激活和活性的确切贡献提供了新的见解。首先,我们发现位点一的钙离子难以交换,其结合亲和力为Kd = 0.3微摩尔(ΔH = -6.70 +/- 0.52千卡/摩尔),这表明它对酶的稳定很重要。位点二可以被一些镧系元素占据,但只有碱土金属第2族的钙离子可以占据,并且其占据对于活性是必需的。位点三可以被一些镧系元素、钙离子或镁离子占据;然而,当存在镁离子时,酶是无活性的,通道是关闭的。因此,位点二和三位点的钙离子结合共同作用打开通道。我们推测通道开放的操纵可能受细胞内阳离子水平的控制。总之,这些数据对该酶的反应机制具有重要意义:通道的开放可能控制活性位点处底物的进入和操纵。

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