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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Two distinct anionic phospholipid-dependent events involved in SecA-mediated protein translocation
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Two distinct anionic phospholipid-dependent events involved in SecA-mediated protein translocation

机译:涉及Seca介导的蛋白易位的两个不同的阴离子磷脂依赖事件

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摘要

Protein translocation across the bacterial cytoplasmic membrane is an essential process catalyzed by the Sec translocase, which in its minimal form consists of the protein-conducting channel SecYEG, and the motor ATPase SecA. SecA binds via its positively charged N-terminus to membranes containing anionic phospholipids, leading to a lipid-bound intermediate. This interaction induces a conformational change in SecA, resulting in a high-affinity association with SecYEG, which initiates protein translocation. Here, we examined the effect of anionic lipids on the SecA-SecYEG interaction in more detail, and discovered a second, yet unknown, anionic lipid-dependent event that stimulates protein translocation. Based on molecular dynamics simulations we identified an anionic lipid-enriched region in vicinity of the lateral gate of SecY. Here, the anionic lipid headgroup accesses the lateral gate, thereby stabilizing the pre-open state of the channel. The simulations suggest flip-flop movement of phospholipid along the lateral gate. Electrostatic contribution of the anionic phospholipids at the lateral gate may directly stabilize positively charged residues of the signal sequence of an incoming preprotein. Such a mechanism allows for the correct positioning of the entrant peptide, thereby providing a long-sought explanation for the role of anionic lipids in signal sequence folding during protein translocation.
机译:细菌细胞质膜的蛋白质易位是由SEC荧光蛋白催化的必要方法,其最小形式由蛋白质导通通道SECYEG和电动机ATPase Seca组成。 Seca通过其带正电荷的N-末端与含阴离子磷脂的膜结合,导致脂质结合的中间体。该相互作用在Seca诱导构象变化,从而导致与secyeg的高亲和力关联,该exyeg引发蛋白易位。在这里,我们在更详细地研究了阴离子脂质对Seca-Sechyeg相互作用的影响,并发现了刺激蛋白易位的第二个,但未知的阴离子依赖性事件。基于分子动力学模拟,我们鉴定了Secy的侧闸附近的阴离子脂质富集的区域。这里,阴离子脂质标题访问横向栅极,从而稳定通道的预开部。模拟表明沿着侧栅的磷脂的触发器运动。阴离子磷脂在横向栅极的静电贡献可以直接稳定进入的前蛋白的信号序列的带正电的残余物。这种机制允许进入剂肽的正确定位,从而为蛋白质易位期间的信号序列折叠的阴离子脂质的作用提供了长寻求的解释。

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