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首页> 外文期刊>Journal of Molecular Biology >Structural insights into the recognition of peroxisomal targeting signal 1 by Trypanosoma brucei peroxin 5.
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Structural insights into the recognition of peroxisomal targeting signal 1 by Trypanosoma brucei peroxin 5.

机译:布鲁氏锥虫过氧化物酶5识别过氧化物酶体靶向信号1的结构见解。

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摘要

Glycosomes are peroxisome-like organelles essential for trypanosomatid parasites. Glycosome biogenesis is mediated by proteins called "peroxins," which are considered to be promising drug targets in pathogenic Trypanosomatidae. The first step during protein translocation across the glycosomal membrane of peroxisomal targeting signal 1 (PTS1)-harboring proteins is signal recognition by the cytosolic receptor peroxin 5 (PEX5). The C-terminal PTS1 motifs interact with the PTS1 binding domain (P1BD) of PEX5, which is made up of seven tetratricopeptide repeats. Obtaining diffraction-quality crystals of the P1BD of Trypanosoma brucei PEX5 (TbPEX5) required surface entropy reduction mutagenesis. Each of the seven tetratricopeptide repeats appears to have a residue in the alpha(L) conformation in the loop connecting helices A and B. Five crystal structures of the P1BD of TbPEX5 were determined, each in complex with a hepta- or decapeptide corresponding to a natural or nonnatural PTS1 sequence. The PTS1 peptides are bound between the two subdomains of the P1BD. These structures indicate precise recognition of the C-terminal Leu of the PTS1 motif and important interactions between the PTS1 peptide main chain and up to five invariant Asn side chains of PEX5. The TbPEX5 structures reported here reveal a unique hydrophobic pocket in the subdomain interface that might be explored to obtain compounds that prevent relative motions of the subdomains and interfere selectively with PTS1 motif binding or release in trypanosomatids, and would therefore disrupt glycosome biogenesis and prevent parasite growth.
机译:糖体是锥虫体寄生虫必不可少的过氧化物酶体样细胞器。糖体的生物发生是由称为“过氧化物酶”的蛋白质介导的,该蛋白质被认为是致病性锥虫科中有希望的药物靶标。过氧化物酶体靶向信号1(PTS1)的蛋白质跨糖体膜蛋白转运过程中的第一步是通过胞质受体过氧化物酶5(PEX5)识别信号。 C末端的PTS1基序与PEX5的PTS1结合结构域(P1BD)相互作用,该结构域由七个四三肽重复序列组成。布鲁氏锥虫PEX5(TbPEX5)的P1BD的衍射质量晶体的获得需要表面熵降低诱变。七个四三肽重复序列的每一个似乎在连接螺旋A和B的环中的alpha(L)构象中都有一个残基。确定了TbPEX5的P1BD的五个晶体结构,每个晶体结构都与对应于a的七肽或十肽复合天然或非天然PTS1序列。 PTS1肽结合在P1BD的两个亚结构域之间。这些结构表明可以精确识别PTS1基序的C末端Leu,以及PTS1肽主链与PEX5的多达五个不变的Asn侧链之间的重要相互作用。此处报道的TbPEX5结构在亚结构域界面中揭示了一个独特的疏水性口袋,可以探索该化合物以防止这些亚域的相对运动并选择性干扰PTS1基序结合或在锥虫中释放,从而破坏糖体的生物发生并防止寄生虫生长。 。

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