Department of Biochemistry, University of Gdansk, Poland.
Arch Biochem Biophys. 2010 Aug 15;500(2):123-30. doi: 10.1016/j.abb.2010.05.028. Epub 2010 May 31.
The aim of this study was to characterize the role of particular elements of the regulatory loop L2 in the activation process and maintaining the proteolytic activity of HtrA (DegP) from Escherichia coli. We measured the effects of various mutations introduced to the L2 loop's region (residues 228-238) on the stability of HtrA molecule and its proteolytic activity. We demonstrated that most mutations affected the activity of HtrA. In the case of the following substitutions: L229N, N235I, I238N, the proteolytic activity was undetectable. Thus, the majority of interactions mediated by the studied amino-acid residues seem to play important role in maintaining the active conformation. Formation of contacts between the apical parts (residues 231-234) of the L2 loops within the HtrA trimer, in particular the residues D232, was shown to play a crucial role in the activation process of HtrA. Stabilization of these intermolecular interactions by substitution of D232 with valine caused a stimulation of proteolytic activity whereas deletion of this region abolished the activity. Since the pathogenic E. coli strains require active HtrA for virulence, the apical part of L2 is of particular interest in terms of structure-based drug design for treatment E. coli infections.
本研究旨在探讨大肠杆菌 HtrA(DegP)激活过程和维持其蛋白水解活性中 L2 调控环特定元件的作用。我们测量了 L2 环(残基 228-238)区域引入的各种突变对 HtrA 分子稳定性及其蛋白水解活性的影响。结果表明,大多数突变影响了 HtrA 的活性。在以下取代的情况下:L229N、N235I、I238N,蛋白水解活性无法检测到。因此,研究氨基酸残基介导的大多数相互作用似乎在维持活性构象中发挥重要作用。在 HtrA 三聚体中,L2 环的顶端部分(残基 231-234)之间形成的接触,特别是残基 D232,在 HtrA 的激活过程中发挥着关键作用。通过用缬氨酸取代 D232 稳定这些分子间相互作用,导致蛋白水解活性增强,而删除该区域则使活性丧失。由于致病性大肠杆菌菌株需要活性 HtrA 才能致病,因此 L2 的顶端部分在基于结构的药物设计治疗大肠杆菌感染方面具有特别重要的意义。