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鉴定恶性疟原虫裂殖子表面蛋白 2(MSP2)保守 N 端区域形成纤维过程中的关键残基。

Identification of key residues involved in fibril formation by the conserved N-terminal region of Plasmodium falciparum merozoite surface protein 2 (MSP2).

机构信息

The Walter & Eliza Hall Institute of Medical Research, 1G Royal Parade, Parkville 3052, Australia.

出版信息

Biochimie. 2010 Oct;92(10):1287-95. doi: 10.1016/j.biochi.2010.06.001. Epub 2010 Jun 11.

Abstract

Merozoite surface protein 2 (MSP2) from the human malaria parasite Plasmodium falciparum is expressed as a GPI-anchored protein on the merozoite surface. MSP2 is assumed to have a role in erythrocyte invasion and is a leading vaccine candidate. Recombinant MSP2 forms amyloid-like fibrils upon storage, as do peptides corresponding to sequences in the conserved N-terminal region, which constitutes the structural core of fibrils formed by full-length MSP2. We have investigated the roles of individual residues in fibril formation and local ordered structure in two peptides, a recombinant 25-residue peptide corresponding to the entire N-terminal domain of mature MSP2 and an 8-residue peptide from the central region of this domain (residues 8-15). Both peptides formed fibrils that were similar to amyloid-like fibrils formed by full-length MSP2. Phe11 and Ile12 have important roles both in stabilising local structure in these peptides and promoting fibril formation; the F11A and I12A mutants of MSP2(8-15) were essentially unstructured in solution and fibril formation at pH 7.4 and 4.7 was markedly retarded. The T10A mutant showed intermediate behaviour, having a less well defined structure than wild-type and slower fibril formation at pH 7.4. The mutation of Phe11 and Ile12 in MSP2(1-25) significantly retarded but did not abolish fibril formation, indicating that these residues also play a key role in fibril formation by the entire N-terminal conserved region. These mutations had little effect on the aggregation of full-length MSP2, however, suggesting that regions outside the conserved N-terminus have unanticipated importance for fibril formation in the full-length protein.

摘要

裂殖子表面蛋白 2(MSP2)来自人类疟原虫恶性疟原虫,在裂殖子表面作为糖基磷脂酰肌醇(GPI)锚定蛋白表达。MSP2 假定在红细胞入侵中具有作用,并且是主要的疫苗候选物。重组 MSP2 在储存时形成淀粉样原纤维,与对应于保守 N 末端区域序列的肽一样,该区域构成由全长 MSP2 形成的纤维的结构核心。我们已经研究了在两个肽中纤维形成和局部有序结构中单个残基的作用,一个对应于成熟 MSP2 的整个 N 末端结构域的全长 25 个残基的重组肽和该结构域的中心区域的 8 个残基的肽(残基 8-15)。这两种肽都形成了类似于全长 MSP2 形成的淀粉样原纤维的纤维。苯丙氨酸 11 位和异亮氨酸 12 位在稳定这些肽的局部结构和促进纤维形成中都具有重要作用;MSP2(8-15)的 F11A 和 I12A 突变体在溶液中基本上没有结构,并且在 pH7.4 和 4.7 下的纤维形成明显延迟。T10A 突变体表现出中间行为,其结构比野生型的定义不明确,并且在 pH7.4 下的纤维形成速度较慢。在 MSP2(1-25)中突变苯丙氨酸 11 位和异亮氨酸 12 位显着延迟但没有阻止纤维形成,表明这些残基在整个 N 末端保守区域的纤维形成中也起关键作用。这些突变对全长 MSP2 的聚集几乎没有影响,然而,这表明保守 N 末端以外的区域对全长蛋白质的纤维形成具有意外的重要性。

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