Williams R Scott, Glover J N Mark
Department of Biochemistry, 437 Medical Sciences Building, University of Alberta, Edmonton T6G 2H7, Canada.
J Biol Chem. 2003 Jan 24;278(4):2630-5. doi: 10.1074/jbc.M210019200. Epub 2002 Nov 8.
The integrity of the carboxyl-terminal BRCT repeat region is critical for BRCA1 tumor suppressor function; however, the molecular details of how a number of clinically derived BRCT missense mutations affect BRCA1 function remain largely unknown. Here we assess the structural response of the BRCT tandem repeat domain to a well characterized, cancer-associated single amino acid substitution, Met-1775 --> Arg-1775. The structure of BRCT-M1775R reveals that the mutated side chain is extruded from the protein hydrophobic core, thereby altering the protein surface. Charge-charge repulsion, rearrangement of the hydrophobic core, and disruption of the native hydrogen bonding network at the interface between the two BRCT repeats contribute to the conformational instability of BRCT-M1775R. Destabilization and global unfolding of the mutated BRCT domain at physiological temperatures explain the pleiotropic molecular and genetic defects associated with the BRCA1-M1775R protein.
羧基末端BRCT重复区域的完整性对于BRCA1肿瘤抑制功能至关重要;然而,许多临床衍生的BRCT错义突变如何影响BRCA1功能的分子细节仍 largely未知。在这里,我们评估了BRCT串联重复结构域对一个特征明确的、与癌症相关的单氨基酸取代Met-1775→Arg-1775的结构响应。BRCT-M1775R的结构表明,突变的侧链从蛋白质疏水核心中挤出,从而改变了蛋白质表面。两个BRCT重复序列之间界面处的电荷-电荷排斥、疏水核心的重排以及天然氢键网络的破坏导致了BRCT-M1775R的构象不稳定性。在生理温度下,突变的BRCT结构域的不稳定和整体解折叠解释了与BRCA1-M1775R蛋白相关的多效性分子和遗传缺陷。