A. N. Bach Institute of Biochemistry, Russian Academy of Sciences, Leninsky Prospect 33, Moscow 119071, Russian Federation.
Biochemistry. 2013 Jan 8;52(1):152-60. doi: 10.1021/bi3012884. Epub 2012 Dec 24.
Differential scanning calorimetry (DSC) was applied to investigate the thermal unfolding of rabbit skeletal muscle G-actin in its complexes with actin-binding proteins, cofilin, twinfilin, and profilin. The results show that the effects of these proteins on the thermal stability of G-actin depend on the nucleotide, ATP or ADP, bound in the nucleotide-binding cleft between actin subdomains 2 and 4. Interestingly, cofilin binding stabilizes both ATP-G-actin and ADP-G-actin, whereas twinfilin increases the thermal stability of the ADP-G-actin but not that of the ATP-G-actin. By contrast, profilin strongly decreases the thermal stability of the ATP-G-actin but has no appreciable effect on the ADP-G-actin. Comparison of these DSC results with literature data reveals a relationship between the effects of actin-binding proteins on the thermal unfolding of G-actin, stabilization or destabilization, and their effects on the rate of nucleotide exchange in the nucleotide-binding cleft, decrease or increase. These results suggest that the thermal stability of G-actin depends, at least partially, on the conformation of the nucleotide-binding cleft: the actin molecule is more stable when the cleft is closed, while an opening of the cleft leads to significant destabilization of G-actin. Thus, DSC studies of the thermal unfolding of G-actin can provide new valuable information about the conformational changes induced by actin-binding proteins in the actin molecule.
差示扫描量热法(DSC)被应用于研究兔骨骼肌 G-肌动蛋白与其结合蛋白(丝切蛋白、双丝氨酸蛋白和前丝状蛋白)复合物的热变性。结果表明,这些蛋白对 G-肌动蛋白热稳定性的影响取决于结合在肌动蛋白亚结构域 2 和 4 之间核苷酸结合槽的核苷酸,ATP 或 ADP。有趣的是,丝切蛋白结合稳定了 ATP-G-肌动蛋白和 ADP-G-肌动蛋白,而双丝氨酸蛋白增加了 ADP-G-肌动蛋白的热稳定性,但对 ATP-G-肌动蛋白没有影响。相比之下,前丝状蛋白强烈降低了 ATP-G-肌动蛋白的热稳定性,但对 ADP-G-肌动蛋白没有明显影响。将这些 DSC 结果与文献数据进行比较,揭示了肌动蛋白结合蛋白对 G-肌动蛋白热变性的影响(稳定或不稳定)与其对核苷酸结合槽中核苷酸交换速率的影响(增加或减少)之间存在关系。这些结果表明,G-肌动蛋白的热稳定性至少部分取决于核苷酸结合槽的构象:当结合槽关闭时,肌动蛋白分子更稳定,而结合槽的打开会导致 G-肌动蛋白显著失稳。因此,G-肌动蛋白热变性的 DSC 研究可以为肌动蛋白结合蛋白在肌动蛋白分子中诱导的构象变化提供新的有价值信息。