Department of Biochemistry and Cell Biology, Rice University, MS-140, P.O. Box 1892, Houston, TX 77251-1892, USA.
J Mol Biol. 2010 Mar 5;396(4):924-36. doi: 10.1016/j.jmb.2009.12.023. Epub 2009 Dec 21.
We determined the sequence dependence of human BNIP3 transmembrane domain dimerization using the biological assay TOXCAT. Mutants in which intermonomer hydrogen bonds between Ser172 and His173 are abolished show moderate interaction, indicating that side-chain hydrogen bonds contribute to dimer stability but are not essential to dimerization. Mutants in which a GxxxG motif composed of Gly180 and Gly184 has been abolished show little or no interaction, demonstrating the critical nature of the GxxxG motif to BNIP3 dimerization. These findings show that side-chain hydrogen bonds can enhance the intrinsic dimerization of a GxxxG motif and that sequence context can control how hydrogen bonds influence helix-helix interactions in membranes. The dimer interface mapped by TOXCAT mutagenesis agrees closely with the interfaces observed in the NMR structure and inferred from mutational analysis of dimerization on SDS-PAGE, showing that the native dimer structure is retained in detergents. We show that TOXCAT and SDS-PAGE give complementary and consistent information about BNIP3 transmembrane domain dimerization: TOXCAT is insensitive to mutations that have modest effects on self-association in detergents but readily discriminates among mutations that completely disrupt detergent-resistant dimerization. The close agreement between conclusions reached from TOXCAT and SDS-PAGE data for BNIP3 suggests that accurate estimates of the relative effects of mutations on native-state protein-protein interactions can be obtained even when the detergent environment is strongly disruptive.
我们使用生物测定 TOXCAT 确定了人类 BNIP3 跨膜结构域二聚体的序列依赖性。破坏单体间 Ser172 和 His173 之间氢键的突变体显示出中等相互作用,表明侧链氢键有助于二聚体稳定性,但不是二聚化所必需的。破坏由 Gly180 和 Gly184 组成的 GxxxG 基序的突变体显示出很少或没有相互作用,证明了 GxxxG 基序对 BNIP3 二聚化的关键性质。这些发现表明,侧链氢键可以增强 GxxxG 基序的固有二聚化,并且序列上下文可以控制氢键如何影响膜中螺旋-螺旋相互作用。通过 TOXCAT 诱变映射的二聚体界面与 NMR 结构中观察到的界面以及 SDS-PAGE 上二聚化的突变分析推断的界面非常吻合,表明天然二聚体结构在去污剂中得以保留。我们表明,TOXCAT 和 SDS-PAGE 提供了 BNIP3 跨膜结构域二聚化的互补且一致的信息:TOXCAT 对在去污剂中对自组装有适度影响的突变不敏感,但易于区分完全破坏去污剂抗性二聚化的突变。TOXCAT 和 SDS-PAGE 对 BNIP3 数据得出的结论非常吻合,这表明即使在去污剂环境强烈破坏的情况下,也可以获得对突变对天然状态蛋白质-蛋白质相互作用的相对影响的准确估计。