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Probing biophysical sequence constraints within the transmembrane domains of rhodopsin by deep mutational scanning

机译:深静脉扫描抑制杂皮蛋白跨膜结构域内的生物物理序列约束

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Membrane proteins must balance the sequence constraints associated with folding and function against the hydrophobicity required for solvation within the bilayer. We recently found the expression and maturation of rhodopsin are limited by the hydrophobicity of its seventh transmembrane domain (TM7), which contains polar residues that are essential for function. On the basis of these observations, we hypothesized that rhodopsin’s expression should be less tolerant of mutations in TM7 relative to those within hydrophobic TM domains. To test this hypothesis, we used deep mutational scanning to compare the effects of 808 missense mutations on the plasma membrane expression of rhodopsin in HEK293T cells. Our results confirm that a higher proportion of mutations within TM7 (37%) decrease rhodopsin’s plasma membrane expression relative to those within a hydrophobic TM domain (TM2, 25%). These results in conjunction with an evolutionary analysis suggest solvation energetics likely restricts the evolutionary sequence space of polar TM domains.
机译:膜蛋白必须平衡与折叠相关的序列约束,并抵抗双层溶解所需的疏水性。我们最近发现罗多蛋白酶的表达和成熟受其第七跨膜结构域(TM7)的疏水性的限制,其含有对功能至关重要的极性残基。在这些观察结果的基础上,我们假设相对于疏水性TM结构域内的那些,洛霉蛋白的表达应不太耐受TM7中的突变。为了测试这一假设,我们使用深静脉扫描来比较808次畸形突变对HEK293T细胞罗多蛋白酶膜表达的影响。我们的结果证实,TM7(37%)内的突变比例较高(37%)将紫红黄素的血浆膜表达相对于疏水性TM结构域内(TM2,25%)降低。这些结果与进化分析结合建议溶剂化能量可能限制极性TM域的进化序列空间。

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