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Influence of proline residues in transmembrane helix packing.

机译:脯氨酸残基在跨膜螺旋堆积中的影响。

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摘要

Integral membrane proteins often contain proline residues in their alpha-helical transmembrane (TM) fragments, which may strongly influence their folding and association. Pro-scanning mutagenesis of the helical domain of glycophorin A (GpA) showed that replacement of the residues located at the center abrogates helix packing while substitution of the residues forming the ending helical turns allows dimer formation. Synthetic TM peptides revealed that a point mutation of one of the residues of the dimerization motif (L75P) located at the N-terminal helical turn of the GpA TM fragment, adopts a secondary structure and oligomeric state similar to the wild-type sequence in detergents. In addition, both glycosylation mapping in biological membranes and molecular dynamics showed that the presence of a proline residue at the lipid/water interface has as an effect the extension of the helical end. Thus, helix packing can be an important factor that determines appearance of proline in TM helices. Membrane proteins might accumulate proline residues at the two ends of their TM segments in order to modulate the exposition of key amino acid residues at the interface for molecular recognition events while allowing stable association and native folding.
机译:整体膜蛋白通常在其α螺旋跨膜(TM)片段中包含脯氨酸残基,这可能会强烈影响其折叠和缔合。糖蛋白A(GpA)螺旋结构域的前扫描诱变显示,替换位于中心的残基可消除螺旋堆积,而形成末端螺旋匝的残基被置换则可形成二聚体。合成TM肽显示位于GpA TM片段N末端螺旋末端的二聚化基序(L75P)残基之一的点突变具有类似于去污剂中野生型序列的二级结构和寡聚状态。另外,生物膜中的糖基化作图和分子动力学都表明在脂质/水界面上脯氨酸残基的存在有效地延长了螺旋末端。因此,螺旋堆积可能是决定脯氨酸在TM螺旋中出现的重要因素。膜蛋白可能会在其TM段的两端积累脯氨酸残基,以调节分子识别事件界面上关键氨基酸残基的暴露,同时允许稳定的缔合和天然折叠。

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