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Hydrophobicity of transmembrane proteins: Spatially profiling the distribution.

机译:跨膜蛋白的疏水性:空间分布图。

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摘要

A hallmark of soluble globular protein tertiary structure is a hydrophobic core and a protein exterior populated predominantly by hydrophilic residues. Recent hydrophobic moment profiling of the spatial distribution of 30 globular proteins of diverse size and structure had revealed features of this distribution that were comparable. Analogous profiling of the hydrophobicity distribution of the alpha-helical buried bundles of several transmembrane proteins, as the lipid/protein interface is approached from within the bilayer, reveals spatial hydrophobicity profiles that contrast with those obtained for the soluble proteins. The calculations, which enable relative changes of hydrophobicity to be simply identified over the entire spatial extent of the multimer within the lipid bilayer, show the accumulated zero-order moments of the bundles to be mainly inverted with respect to that found for the soluble proteins. This indicates a statistical increase in the average residue hydrophobic content as the lipidbilayer is approached. This result differs from that of a relatively recent calculation and qualitatively agrees with earlier calculations involving lipid exposed and buried residues of the alpha-helices of transmembrane proteins. Spatial profiling, over the entire spatial extent of the multimer with scaled values of residue hydrophobicity, provides information that is not available from calculations using lipid exposure alone.
机译:可溶性球蛋白三级结构的标志是疏水核心和主要由亲水残基组成的蛋白质外部。最近对30种大小和结构不同的球状蛋白的空间分布进行的疏水矩分析表明,这种分布具有可比性。当从双层内接近脂质/蛋白质界面时,对几个跨膜蛋白质的α-螺旋掩埋束的疏水性分布的相似性分析揭示了与可溶蛋白质获得的空间疏水性特征相反的空间。计算使得在脂质双分子层内的多聚体的整个空间范围内可以简单地识别疏水性的相对变化,该计算表明相对于可溶性蛋白质而言,束的累积零阶矩主要反转。这表明当接近脂质双层时,平均残余疏水性含量的统计增加。该结果与相对较新的计算结果不同,并且在质量上与较早的计算有关,涉及跨膜蛋白的α螺旋的脂质暴露和掩埋残基。在具有残基疏水性标度值的多聚体的整个空间范围内进行空间分析,可提供仅使用脂质暴露进行计算无法获得的信息。

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