Kim K M, Yi E C, Baker D, Zhang K Y
Division of Basic Sciences, Fred Hutchinson Cancer Research Center, 1100 Fairview Avenue North, Seattle, Washington 98109, USA.
Acta Crystallogr D Biol Crystallogr. 2001 May;57(Pt 5):759-62. doi: 10.1107/s0907444901002918. Epub 2001 Apr 24.
Structural studies of the wild type and mutants of the src SH3 domain were initiated to elucidate the correlation of the native-state topology with protein thermostability and folding kinetics. An extra mass of 178 Da arising from the post-translational modification at the N-terminal His tag was observed. The spontaneous alpha-N-6 gluconoylation at the amino group of the His-tagged SH3 domain contributed to the observed extra mass. The partial modification of the N-terminal His-tag produced heterogeneity, both in size and in charge, in the Escherichia coli expressed SH3 domain. The removal of the His tag from the SH3 domain was essential for the crystallization of both wild-type and mutant src SH3. Both the wild type and the W43I mutant were crystallized by hanging-drop vapor diffusion and are in the hexagonal space group P6(5)22 with one molecule in the asymmetric unit. Data sets were collected to 1.8 and 1.95 A resolution for the the wild type and the W43I mutant, respectively.
为了阐明天然态拓扑结构与蛋白质热稳定性和折叠动力学之间的相关性,我们开展了对src SH3结构域野生型和突变体的结构研究。观察到由于N端His标签的翻译后修饰产生了178 Da的额外质量。His标签化的SH3结构域氨基处的自发α-N-6葡糖酰化导致了观察到的额外质量。N端His标签的部分修饰在大肠杆菌表达的SH3结构域中产生了大小和电荷方面的异质性。从SH3结构域去除His标签对于野生型和突变型src SH3的结晶至关重要。野生型和W43I突变体均通过悬滴气相扩散法结晶,且都属于六方空间群P6(5)22,不对称单元中有一个分子。分别收集了野生型和W43I突变体分辨率为1.8 Å和1.95 Å的数据集。