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β分支残基紧邻 GG4 基序,促进了血型糖蛋白 A 跨膜螺旋的有效聚集。

Beta-branched residues adjacent to GG4 motifs promote the efficient association of glycophorin A transmembrane helices.

机构信息

Division of Molecular Structure and Function, Research Institute, Hospital for Sick Children, Toronto, Ontario, Canada M5G 1X8.

出版信息

Biopolymers. 2011;96(3):340-7. doi: 10.1002/bip.21565.

Abstract

Protein transmenembrane (TM) segments participating in helix-helix packing commonly contain small residue patterns (termed GG4 or "small-xxx-small" motifs) at i and i + 4 positions. Within many TM segments - such as the glycophorin A (GpA) sequence L75IxxGVxxGVxxT87- the G17y-xxx-Gly83 motif often occurs in combination with large, usually beta3-branched aliphatic residues at adjacent positions, typified here by Val30 and Val84 residues. To explore the importance of local P-branched character on GpA dimerization, we made systematic replacements to all 16 combinations of single or double Ile, Leu, and AIa residues at GpA TM Val/Val positions 80 and 84. Using the TOXCAT system to assay self-oligomerization in the Escherichia coli inner membrane--we observed that (i) combinations of Val and lie residues maintained, or improved dimerization levels; (ii) single Ala or Leu mutant combinations with Val or Ile maintained near-wild type dimerization affinities; and (iii) in the absence of beta-branching, i.e., Leu/Leu, Ala/Ala and Ala/Leu combinations, GpA dimerization was significantly diminished. An apparent capacity of lle-containing mutants to increase GpA dimerization versus WT likely arises from improved van der Waals packing (vs. Val) within the locus of helix contact, consistent with correlations we noted in lipid accessibility measurements. Examination of several synthetic peptides with sequences corresponding to selected GpA mutants (VV VI, IV II, and LL) confirmed their dimerization on sodium dodecylsulfate polyacrylamide gel electrophoresis (SDS-PAGE). The overall results reinforce the importance of a beta-branch-containing "ridge" residue to complement a "small-xxx-small groove" in promotion of TM-TM interactions.

摘要

蛋白质跨膜 (TM) 片段参与螺旋-螺旋包装,通常在 i 和 i + 4 位置包含小残基模式(称为 GG4 或“小-xxx-小”基序)。在许多 TM 片段中 - 例如糖蛋白 A (GpA) 序列 L75IxxGVxxGVxxT87-,G17y-xxx-Gly83 基序通常与相邻位置的大、通常为 beta3-支链脂族残基结合,这里典型的是 Val30 和 Val84 残基。为了探索局部 P-支链特性对 GpA 二聚化的重要性,我们对 GpA TM Val/Val 位置 80 和 84 处的单个或双 Ile、Leu 和 AIa 残基的所有 16 种组合进行了系统替换。使用 TOXCAT 系统在大肠杆菌内膜中测定自寡聚化 - 我们观察到 (i) Val 和 lie 残基的组合维持或提高了二聚化水平;(ii) 具有 Val 或 Ile 的单个 Ala 或 Leu 突变组合保持了接近野生型的二聚化亲和力;(iii) 在没有 beta-支链的情况下,即 Leu/Leu、Ala/Ala 和 Ala/Leu 组合,GpA 二聚化明显减少。与我们在脂质可及性测量中注意到的相关性一致,含有 lle 的突变体相对于 WT 增加 GpA 二聚化的能力可能源于在螺旋接触部位的范德华堆积(与 Val 相比)得到改善。对对应于选定 GpA 突变体(VV VI、IV II 和 LL)的几个合成肽的序列的检查证实了它们在十二烷基硫酸钠聚丙烯酰胺凝胶电泳 (SDS-PAGE) 上的二聚化。总体结果强化了含有 beta-支链的“脊”残基对促进 TM-TM 相互作用的重要性,补充了“小-xxx-小沟”。

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