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Membrane-Induced Folding and Structure of Membrane-Bound Annexin A1 N-Terminal Peptides: Implications for Annexin-Induced Membrane Aggregation

机译:膜诱导的膜结合膜联蛋白A1 N末端肽的折叠和结构:对膜联蛋白诱导的膜聚集的影响。

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摘要

Annexins constitute a family of calcium-dependent membrane-binding proteins and can be classified into two groups, depending on the length of the N-terminal domain unique for each individual annexin. The N-terminal domain of annexin A1 can adopt an α-helical conformation and has been implicated in mediating the membrane aggregation behavior of this protein. Although the calcium-independent interaction of the annexin A1 N-terminal domain has been known for some time, there was no structural information about the membrane interaction of this secondary membrane-binding site of annexin A1. This study used circular dichroism spectroscopy to show that a rat annexin A1 N-terminal peptide possesses random coil structure in aqueous buffer but an α-helical structure in the presence of small unilamellar vesicles. The binding of peptides to membranes was confirmed by surface pressure (Langmuir film balance) measurements using phosphatidylcholine/phosphatidylserine monolayers, which show a significant increase after injection of rat annexin A1 N-terminal peptides. Lamellar neutron diffraction with human and rat annexin A1 N-terminal peptides reveals an intercalation of the helical peptides with the phospholipid bilayer, with the helix axis lying parallel to the surface of membrane. Our findings confirm that phospholipid membranes assist the folding of the N-terminal peptides into α-helical structures and that this conformation enables favorable direct interactions with the membrane. The results are consistent with the hypothesis that the N-terminal domain of annexin A1 can serve as a secondary membrane binding site in the process of membrane aggregation by providing a peripheral membrane anchor.
机译:膜联蛋白构成钙依赖性膜结合蛋白的家族,并且可以根据每个单独的膜联蛋白独特的N-末端结构域的长度分为两类。膜联蛋白A1的N-末端结构域可以采用α-螺旋构象,并且已经参与介导该蛋白的膜聚集行为。尽管膜联蛋白A1 N末端结构域的钙非依赖性相互作用已经知道了一段时间,但没有关于膜联蛋白A1次级膜结合位点的膜相互作用的结构信息。这项研究使用圆二色性光谱法表明,大鼠膜联蛋白A1 N端肽在水性缓冲液中具有随机卷曲结构,但在小的单层囊泡存在下具有α螺旋结构。通过使用磷脂酰胆碱/磷脂酰丝氨酸单层的表面压力(Langmuir膜平衡)测量来证实肽与膜的结合,这在注射大鼠膜联蛋白A1 N-末端肽后显示出显着增加。人和大鼠膜联蛋白A1 N末端肽的层状中子衍射揭示了螺旋肽与磷脂双层的插入,螺旋轴平行于膜表面。我们的发现证实磷脂膜有助于N末端肽折叠成α螺旋结构,并且这种构象能够与膜形成有利的直接相互作用。结果与以下假设一致:膜联蛋白A1的N末端结构域可通过提供外围膜锚来充当膜聚集过程中的次级膜结合位点。

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