Allocati Nerino, Masulli Michele, Pietracupa Marilena, Federici Luca, Di Ilio Carmine
Dipartimento di Scienze Biomediche, Università G. d'Annunzio, Via dei Vestini 31, I-66013 Chieti, Italy.
Biochem J. 2006 Feb 15;394(Pt 1):11-7. doi: 10.1042/BJ20051367.
The bacterium Proteus mirabilis expresses a cytosolic class beta glutathione S-transferase (PmGST B1-1) that is part of a family of multifunctional detoxication enzymes. Like other cytosolic GSTs, PmGST B1-1 possesses two local structural motifs, an N-capping box and a hydrophobic staple motif, both of which are located between amino acids 151 and 156. The N-capping box consists of a reciprocal hydrogen bonding interaction of Thr152 with Asp155, whereas the hydrophobic staple motif consists of a hydrophobic interaction between Phe151 and Ala156. By contrast with other GSTs, PmGST B1-1 displays distinct hydrogen bond interactions in the N-capping box. In mammalian GSTs these structural elements are critical for protein folding and stability. To investigate the role played by these two motifs in a distantly related organism on the evolutionary scale, site-directed mutagenesis was used to generate several mutants of both motifs in PmGST B1-1. All mutants were efficiently overexpressed and purified, but they were quite unstable, although at different levels, indicating that protein folding was significantly destabilized. The analysis of the T152A and D155G variants indicated that the N-capping box motif plays an important role in the stability and correct folding of the enzyme. The analysis of F151A and A156G mutants revealed that the hydrophobic staple motif influences the structural maintenance of the protein and is implicated in the folding process of PmGST B1-1. Finally, the replacement of Thr152 and Asp155, as well as Phe151 and Ala156 residues influences the catalytic efficiency of the enzyme.
奇异变形杆菌表达一种胞质β类谷胱甘肽S-转移酶(PmGST B1-1),它是多功能解毒酶家族的一部分。与其他胞质谷胱甘肽S-转移酶一样,PmGST B1-1具有两个局部结构基序,一个N-封端盒和一个疏水钉基序,两者都位于氨基酸151和156之间。N-封端盒由Thr152与Asp155之间的相互氢键相互作用组成,而疏水钉基序由Phe151与Ala156之间的疏水相互作用组成。与其他谷胱甘肽S-转移酶相比,PmGST B1-1在N-封端盒中显示出独特的氢键相互作用。在哺乳动物谷胱甘肽S-转移酶中,这些结构元件对蛋白质折叠和稳定性至关重要。为了研究这两个基序在进化尺度上远缘相关生物体中的作用,使用定点诱变在PmGST B1-1中产生了这两个基序的几个突变体。所有突变体均有效过表达并纯化,但它们相当不稳定,尽管程度不同,这表明蛋白质折叠明显不稳定。对T152A和D155G变体的分析表明,N-封端盒基序在酶的稳定性和正确折叠中起重要作用。对F151A和A156G突变体的分析表明,疏水钉基序影响蛋白质的结构维持,并与PmGST B1-1的折叠过程有关。最后,Thr152和Asp155以及Phe151和Ala156残基的替换会影响酶的催化效率。