Bhatt Anant Narayan, Bhakuni Vinod, Kumar Ashutosh, Khan M Yahiya, Siddiqi Mohammad Imran
Division of Radiation Biosciences, Institute of Nuclear Medicine and Allied Sciences, Delhi 110 054, India.
Biochim Biophys Acta. 2010 Jun;1804(6):1294-300. doi: 10.1016/j.bbapap.2010.01.023. Epub 2010 Feb 10.
Environmental variables such as pH can significantly influence the folding and stability of a protein molecule. In the present investigation, we compared the alkaline pH-induced unfolding of two homologous serine hydroxymethyltransferase from mesophilic Bacillus subtilis (bsSHMT) and thermophilic Bacillus stearothermophilus (bstSHMT) using various biophysical techniques. The thermophilic enzyme bstSHMT was found to be more resistant to alkaline denaturation compared to its mesophilic counterpart, bsSHMT. Unfolding studies using domain-swapped chimera, constructed by swapping the C-terminal domain of these two wild-type proteins, revealed that C-terminal domain plays a pivotal role in the folding, stability and subunit interaction of these proteins. Primary amino acid sequence analysis of the proteins showed that bsSHMT has six unconserved lysine residues in C-terminal domain, which are absent in bstSHMT. Chemical modification of lysine side chains resulted in stabilization of monomers, only in case of bsSHMT. Moreover, comparison between homology model of bsSHMT with the crystal structure of bstSHMT revealed that a small stretch of 11 amino acids at the end of C-terminal domain was found protruding outside the molecule as a flexible coiled structure in bsSHMT. Taken together these findings suggest that possibly the presence of these non-identical lysine moieties and a small extension of C-terminal domain may be responsible for low stability of bsSHMT under alkaline pH condition.
诸如pH值等环境变量会显著影响蛋白质分子的折叠和稳定性。在本研究中,我们使用各种生物物理技术比较了嗜温性枯草芽孢杆菌(bsSHMT)和嗜热性嗜热脂肪芽孢杆菌(bstSHMT)的两种同源丝氨酸羟甲基转移酶在碱性pH诱导下的去折叠情况。结果发现,与嗜温性对应物bsSHMT相比,嗜热性酶bstSHMT对碱性变性更具抗性。使用通过交换这两种野生型蛋白质的C末端结构域构建的结构域交换嵌合体进行的去折叠研究表明,C末端结构域在这些蛋白质的折叠、稳定性和亚基相互作用中起关键作用。对这些蛋白质的一级氨基酸序列分析表明,bsSHMT在C末端结构域中有六个不保守的赖氨酸残基,而bstSHMT中不存在这些残基。赖氨酸侧链的化学修饰仅在bsSHMT的情况下导致单体稳定。此外,bsSHMT的同源模型与bstSHMT的晶体结构之间的比较表明,在bsSHMT中,C末端结构域末端一小段11个氨基酸以柔性盘绕结构突出于分子之外。综合这些发现表明,这些不同的赖氨酸部分的存在以及C末端结构域的小延伸可能是bsSHMT在碱性pH条件下稳定性低的原因。