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溶组织内阿米巴磷酸丝氨酸转氨酶的生物物理特性研究:辅助因子和结构域在稳定性和亚基组装中的作用。

Biophysical characterization of Entamoeba histolytica phosphoserine aminotransferase (EhPSAT): role of cofactor and domains in stability and subunit assembly.

机构信息

Division of Molecular and Structural Biology, Central Drug Research Institute, Lucknow, India.

出版信息

Eur Biophys J. 2011 May;40(5):599-610. doi: 10.1007/s00249-010-0654-3. Epub 2010 Dec 16.

Abstract

We investigated the role of the cofactor PLP and its binding domain in stability and subunit assembly of phosphoserine aminotransferase (EhPSAT) from an enteric human parasite Entamoeba histolytica. Presence of cofactor influences the tertiary structure of EhPSAT because of the significant differences in the tryptophan microenvironment and proteolytic pattern of holo- and apo-enzyme. However, the cofactor does not influence the secondary structure of the enzyme. Stability of the protein is significantly affected by the cofactor as holo-enzyme shows higher T(m) and C(m) values for thermal and GdnHCl-induced denaturation, respectively, when compared to the apo-enzyme. The cofactor also influences the unfolding pathway of the enzyme. Although urea-dependent unfolding of both holo- and apo-EhPSAT is a three-state process, the intermediates stabilized during unfolding are significantly different. For holo-EhPSAT a dimeric holo-intermediate was stabilized, whereas for apo-EhPSAT, a monomeric intermediate was stabilized. This is the first report on stabilization of a holo-dimeric intermediate for any aminotransferase. The isolated PLP-binding domain is stabilized as a monomer, thus suggesting that either the N-terminal tail or the C-terminal domain of EhPSAT is required for stabilization of dimeric configuration of the wild-type enzyme. To the best of our knowledge, this is a first report investigating the role of PLP and various protein domains in structural and functional organization of a member of subgroup IV of the aminotransferases.

摘要

我们研究了辅因子 PLP 及其结合域在稳定性和亚基组装中的作用,研究对象是一种肠道人类寄生虫溶组织内阿米巴中的磷酸丝氨酸氨基转移酶(EhPSAT)。辅因子的存在影响 EhPSAT 的三级结构,因为其色氨酸微环境和全酶和脱辅基酶的蛋白水解模式存在显著差异。然而,辅因子不影响酶的二级结构。辅因子显著影响蛋白质的稳定性,因为全酶在热变性和 GdnHCl 诱导变性时显示出更高的 T(m) 和 C(m) 值,与脱辅基酶相比。辅因子还影响酶的展开途径。尽管全酶和脱辅基 EhPSAT 的脲依赖性展开都是三态过程,但展开过程中稳定的中间体有很大的不同。对于全酶 EhPSAT,稳定了二聚体全酶中间物,而对于脱辅基 EhPSAT,则稳定了单体中间物。这是第一个报道任何氨基转移酶稳定全酶二聚体中间物的报告。分离的 PLP 结合域作为单体稳定,因此表明 EhPSAT 的 N 端尾部或 C 端结构域是稳定野生型酶二聚体构象所必需的。据我们所知,这是第一个研究辅因子和各种蛋白质结构域在氨基转移酶 IV 亚组成员的结构和功能组织中的作用的报告。

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