Wu X, Knudsen B, Feller S M, Zheng J, Sali A, Cowburn D, Hanafusa H, Kuriyan J
Rockefeller University, New York, NY 10021, USA.
Structure. 1995 Feb 15;3(2):215-26. doi: 10.1016/s0969-2126(01)00151-4.
Proline-rich segments in the guanine nucleotide exchange factor C3G bind much more strongly to the N-terminal Src homology 3 domain (SH3-N) of the proto-oncogene product c-Crk than to other SH3 domains. The presence of a lysine instead of an arginine in the peptides derived from C3G appears to be crucial for this specificity towards c-Crk.
In order to understand the chemical basis of this specificity we have determined the crystal structure of Crk SH3-N in complex with a high affinity peptide from C3G (PPPALPPKKR, Kd approximately 2 microM) at 1.5 A resolution. The peptide adopts a polyproline type II helix that binds, as dictated by electrostatic complementarity, in reversed orientation relative to the orientation seen in the earliest structures of SH3-peptide complexes. A lysine in the C3G peptide is tightly coordinated by three acidic residues in the SH3 domain. In contrast, the co-crystal structure of c-Crk SH3-N and a peptide containing an arginine at the equivalent position (determined at 1.9 A resolution) reveals non-optimal geometry for the arginine and increased disorder.
The c-Crk SH3 domain engages in an unusual lysine-specific interaction that is rarely seen in protein structures, and which appears to be a key determinant of its unique ability to bind the C3G peptides with high affinity.
鸟嘌呤核苷酸交换因子C3G中富含脯氨酸的片段与原癌基因产物c-Crk的N端Src同源结构域3(SH3-N)的结合比与其他SH3结构域的结合要强得多。来自C3G的肽中赖氨酸而非精氨酸的存在似乎对这种针对c-Crk的特异性至关重要。
为了理解这种特异性的化学基础,我们在1.5埃分辨率下确定了Crk SH3-N与来自C3G的高亲和力肽(PPPALPPKKR,解离常数约为2微摩尔)复合物的晶体结构。该肽采用多聚脯氨酸II型螺旋,根据静电互补性,以与SH3-肽复合物最早结构中所见方向相反的方向结合。C3G肽中的一个赖氨酸由SH3结构域中的三个酸性残基紧密配位。相比之下,c-Crk SH3-N与在等效位置含有精氨酸的肽的共晶体结构(在1.9埃分辨率下确定)显示精氨酸的几何结构不理想且无序增加。
c-Crk SH3结构域参与了一种在蛋白质结构中很少见的异常赖氨酸特异性相互作用,这似乎是其以高亲和力结合C3G肽的独特能力的关键决定因素。