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首页> 外文期刊>Journal of Molecular Biology >Proline substitutions are not easily accommodated in a membrane protein.
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Proline substitutions are not easily accommodated in a membrane protein.

机译:脯氨酸取代不容易容纳在膜蛋白中。

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Proline residues are relatively common in transmembrane helices. This suggests that proline substitutions may be readily tolerated in membrane proteins, even though they invariably produce deviations from canonical helical structure. We have experimentally tested this possibility by making proline substitutions at 15 positions throughout the N-terminal half of bacteriorhodopsin helix B. We find that six of the substitutions yielded no active protein and all the others were destabilizing. Three mutations were only slightly destabilizing, however, reducing stability by about 0.5 kcal/mol, and these all occurred close to the N terminus. This result is consistent with the observation that proline is more common near the ends of TM helices. To learn how proline side-chains could be structurally accommodated at different locations in the helix, we solved the structures of a moderately destabilized mutant positioned near the N terminus of the helix, K41P, and a severely destabilized mutant positioned near themiddle of the helix, A51P. The K41P mutation produced only local structural alterations, while the A51P mutation resulted in small, but widely distributed structural changes in helix B. Our results indicate that proline is not easily accommodated in transmembrane helices and that the tolerance to proline substitution is dependent, in a complex way, on the position in the structure.
机译:脯氨酸残基在跨膜螺旋中相对常见。这表明脯氨酸取代在膜蛋白中可能很容易被耐受,即使它们总是与标准螺旋结构产生偏差。我们已经通过在细菌视紫红质螺旋B的N端一半的15个位置进行脯氨酸取代来实验性地测试了这种可能性。我们发现其中六个取代没有产生活性蛋白,而所有其他取代都不稳定。三个突变仅稍微不稳定,但是将稳定性降低约0.5 kcal / mol,并且所有这些突变均发生在N末端附近。该结果与以下观察结果一致:脯氨酸在TM螺旋末端附近更常见。要了解脯氨酸侧链如何在结构上适应螺旋结构中的不同位置,我们解决了位于螺旋结构N末端附近的中度不稳定的突变体K41P和位于螺旋结构中部附近的严重不稳定的突变体的结构, A51P。 K41P突变仅产生局部结构改变,而A51P突变在螺旋B中产生小的但分布广泛的结构变化。我们的结果表明脯氨酸不容易容纳在跨膜螺旋中,并且脯氨酸取代的耐受性取决于复杂的方式,取决于结构中的位置。

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