Bhattacharjee Sanchari, Dasgupta Rakhi, Bagchi Angshuman
Department of Biochemistry and Biophysics, University of Kalyani, Kalyani, Nadia, India.
Biosystems. 2017 Sep;159:12-22. doi: 10.1016/j.biosystems.2017.06.002. Epub 2017 Jul 1.
Cells withstand the effects of temperature change with the help of small heat shock proteins IbpA and IbpB. The IbpAB protein complex interacts with Lon protease in their free form and gets degraded at physiological temperature when there is no temperature stress. However, the proteolytic degradation of IbpAB is diminished when Lon is mutated. The mutation K722Q in Lon brings about some structural changes so that the proteolytic interactions between the heat shock proteins with that of the mutated Lon protease are lost. However, the detailed molecular aspects of the interactions are not yet fully understood. In the present, we made an attempt to analyze the biochemical aspects of the interactions between the small heat shock proteins IbpAB with wild type and mutant Lon protease. We for the first time deciphered the molecular details of the mechanism of interaction of small heat shock proteins with Lon protease bearing K722Q mutation i.e. the interaction pattern of heat shock proteins with mutant Lon protease at physiological temperature in absence of proteolytic machinery. Our study may therefore be useful to elucidate the mechanistic details of the correlation with IbpA, IbpB and Lon protease.
细胞借助小分子热休克蛋白IbpA和IbpB来抵御温度变化的影响。IbpAB蛋白复合物以其游离形式与Lon蛋白酶相互作用,并且在没有温度应激的生理温度下会被降解。然而,当Lon发生突变时,IbpAB的蛋白水解降解作用会减弱。Lon中的K722Q突变会导致一些结构变化,从而使热休克蛋白与突变的Lon蛋白酶之间的蛋白水解相互作用丧失。然而,这些相互作用的详细分子机制尚未完全了解。目前,我们试图分析小分子热休克蛋白IbpAB与野生型和突变型Lon蛋白酶之间相互作用的生化方面。我们首次破译了小分子热休克蛋白与携带K722Q突变的Lon蛋白酶相互作用机制的分子细节,即在没有蛋白水解机制的生理温度下热休克蛋白与突变型Lon蛋白酶的相互作用模式。因此,我们的研究可能有助于阐明IbpA、IbpB与Lon蛋白酶之间相关性的机制细节。