易位
膜
盐桥
跨膜蛋白
膜蛋白
化学
生物物理学
盐(化学)
螺旋(腹足类)
氨基酸
跨膜结构域
生物发生
结晶学
生物化学
突变体
生物
受体
物理化学
基因
生态学
蜗牛
作者
Gerard Duart,John Lamb,Juan Ortiz-Mateu,Arne Elofsson,Ismael Mingarro
标识
DOI:10.1016/j.jmb.2022.167467
摘要
Salt bridges between negatively (D, E) and positively charged (K, R, H) amino acids play an important role in protein stabilization. This has a more prevalent effect in membrane proteins where polar amino acids are exposed to a hydrophobic environment. In transmembrane (TM) helices the presence of charged residues can hinder the insertion of the helices into the membrane. It is possible that the formation of salt bridges could decrease the cost of membrane integration. However, the presence of intra-helical salt bridges in TM domains and their effect on insertion has not been properly studied yet. In this work, we show that potentially salt-bridge forming pairs are statistically over-represented in TM-helices. We then selected some candidates to experimentally determine the contribution of these electrostatic interactions to the translocon-assisted membrane insertion process. Using both in vitro and whole cell systems, we confirm the presence of intra-helical salt bridges in TM segments during biogenesis and determined that they contribute ∼0.5 kcal/mol to the apparent free energy of membrane insertion (ΔGapp). Our observations suggest that salt bridge interactions can be stabilized during translocon-mediated insertion and thus could be relevant to consider for the future development of membrane protein prediction software.
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