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Amino Acid Proximities in Two Sup35 Prion Strains Revealed by Chemical Cross-linking

机译:通过化学交联揭示了两个Sup35 on病毒菌株中的氨基酸邻近性

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摘要

Strains of the yeast prion [PSI] are different folding patterns of the same Sup35 protein, which stacks up periodically to form a prion fiber. Chemical cross-linking is employed here to probe different fiber structures assembled with a mutant Sup35 fragment. The photo-reactive cross-linker, p-benzoyl-l-phenylalanine (pBpa), was biosynthetically incorporated into bacterially prepared recombinant Sup(1–61)-GFP, containing the first 61 residues of Sup35, followed by the green fluorescent protein. Four methionine substitutions and two alanine substitutions were introduced at fixed positions in Sup(1–61) to allow cyanogen bromide cleavage to facilitate subsequent mass spectrometry analysis. Amyloid fibers of pBpa and Met/Ala-substituted Sup(1–61)-GFP were nucleated from purified yeast prion particles of two different strains, namely VK and VL, and shown to faithfully transmit specific strain characteristics to yeast expressing the wild type Sup35 protein. Intra- and intermolecular cross-linking were distinguished by tandem mass spectrometry analysis on fibers seeded from solutions containing equal amounts of 14N- and 15N-labeled protein. Fibers propagating the VL strain type exhibited intra- and intermolecular cross-linking between amino acid residues 3 and 28, as well as intra- and intermolecular linking between 32 and 55. Inter- and intramolecular cross-linking between residues 32 and 55 were detected in fibers propagating the VK strain type. Adjacencies of amino acid residues in space revealed by cross-linking were used to constrain possible chain folds of different [PSI] strains.
机译:酵母病毒[PSI]菌株是同一Sup35蛋白的不同折叠模式,周期性折叠以形成a病毒纤维。这里采用化学交联来探测与突变Sup35片段组装在一起的不同纤维结构。将光反应性交联剂对苯甲酰基-1-苯丙氨酸(pBpa)生物合成到细菌制备的重组Sup(1-61)-GFP中,其中包含Sup35的前61个残基,然后是绿色荧光蛋白。在Sup(1-61)的固定位置引入了四个蛋氨酸取代基和两个丙氨酸取代基,以允许溴化氰裂解,以利于后续的质谱分析。 pBpa和Met / Ala取代的Sup(1-61)-GFP的淀粉样蛋白纤维是从两种不同菌株VK和VL的纯化酵母病毒颗粒中成核的,并显示出忠实地将特定菌株特征传递给表达野生型Sup35的酵母蛋白。串联和串联质谱分析可以区分含有等量的 14 N-和 15 N标记蛋白的溶液中接种的纤维的分子内和分子间交联。传播VL株型的纤维在氨基酸残基3和28之间表现出分子内和分子间交联,在氨基酸残基32和55之间表现出分子内和分子间交联。在氨基酸残基32和55之间检测到分子间和分子内交联。传播VK应变类型的纤维。通过交联揭示的空间中氨基酸残基的邻接用于限制不同[PSI]菌株的可能链折叠。

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