Ahrman Emma, Gustavsson Niklas, Hultschig Claus, Boelens Wilbert C, Emanuelsson Cecilia Sundby
Department of Biochemistry, Lund University, Lund, Sweden.
Extremophiles. 2007 Sep;11(5):659-66. doi: 10.1007/s00792-007-0080-3. Epub 2007 May 8.
Citrate synthase (CS) is often used in chaperone assays since this thermosensitive enzyme aggregates at moderately increased temperatures. Small heat shock proteins (sHsps) are molecular chaperones specialized in preventing the aggregation of other proteins, termed substrate proteins, under conditions of transient heat stress. To investigate the mechanism whereby sHsps bind to and stabilize a substrate protein, we here used peptide array screening covering the sequence of porcine CS (P00889). Strong binding of sHsps was detected to a peptide corresponding to the most N-terminal alpha-helix in CS (amino acids Leu(13) to Gln(27)). The N-terminal alpha-helices in the CS dimer intertwine with the C-terminus in the other subunit and together form a stem-like structure which is protruding from the CS dimer. This stem-like structure is absent in thermostable forms of CS from thermophilic archaebacteria like Pyrococcus furiosus and Sulfolobus solfatacarium. These data therefore suggest that thermostabilization of thermosensitive CS by sHsps is achieved by stabilization of the C- and N-terminae in the protruding thermosensitive softspot, which is absent in thermostable forms of the CS dimer.
柠檬酸合酶(CS)常用于伴侣蛋白分析,因为这种热敏酶在温度适度升高时会聚集。小分子热休克蛋白(sHsps)是一类分子伴侣,专门在短暂热应激条件下防止其他蛋白质(称为底物蛋白)聚集。为了研究sHsps与底物蛋白结合并使其稳定的机制,我们在此使用了覆盖猪CS(P00889)序列的肽阵列筛选。检测到sHsps与CS中最N端α-螺旋对应的肽段(氨基酸Leu(13)至Gln(27))有强烈结合。CS二聚体中的N端α-螺旋与另一个亚基的C端相互缠绕,共同形成一个从CS二聚体突出的茎状结构。在嗜热古菌如嗜热栖热菌和硫磺矿硫化叶菌的CS热稳定形式中不存在这种茎状结构。因此,这些数据表明,sHsps对热敏CS的热稳定作用是通过稳定突出的热敏弱点中的C端和N端来实现的,而这种热敏弱点在CS二聚体的热稳定形式中不存在。