Bioinformatik, Institut für Biochemie, Friedrich-Alexander-Universität, Fahrstraße 17, 91054 Erlangen-Nürnberg, Germany.
J Mol Model. 2011 Aug;17(8):1927-34. doi: 10.1007/s00894-010-0897-z. Epub 2010 Nov 26.
The coordination of activity in biological systems requires the existence of different signal transduction pathways that interact with one another and must be precisely regulated. The Src-family tyrosine kinases, which are found in many signaling pathways, differ in their physiological function despite their high overall structural similarity. In this context, the differences in the SH3-SH2 domain linkers might play a role for differential regulation, but the structural consequences of linker sequence remain poorly understood. We have therefore performed comparative molecular dynamics simulations of wildtype Hck and of a mutant Hck in which the SH3-SH2 domain linker is replaced by the corresponding sequence from the homologous kinase Lck. These simulations reveal that linker replacement not only affects the orientation of the SH3 domain itself, but also leads to an alternative conformation of the activation segment in the Hck kinase domain. The sequence of the SH3-SH2 domain linker thus exerts a remote effect on the active site geometry and might therefore play a role in modulating the structure of the inactive kinase or in fine-tuning the activation process itself.
生物系统活动的协调需要存在不同的信号转导途径,这些途径相互作用,必须精确调节。尽管Src 家族酪氨酸激酶在整体结构上高度相似,但它们在生理功能上存在差异。在这种情况下,SH3-SH2 结构域连接子的差异可能在差异化调节中发挥作用,但连接子序列的结构后果仍知之甚少。因此,我们对野生型 Hck 和突变型 Hck 进行了比较分子动力学模拟,其中 SH3-SH2 结构域连接子被同源激酶 Lck 的相应序列取代。这些模拟表明,连接子的替换不仅会影响 SH3 结构域本身的取向,还会导致 Hck 激酶结构域中激活片段的另一种构象。因此,SH3-SH2 结构域连接子的序列对活性位点的几何形状有远程影响,因此可能在调节无活性激酶的结构或微调激活过程本身方面发挥作用。