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Substrate size selectivity of 20S proteasomes: analysis with variable-sized synthetic substrates.

机译:20S蛋白酶体的底物大小选择性:使用可变大小的合成底物进行分析。

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Proteasomes are tubular complexes with proteolytic activities on their lumenal surfaces so that large substrates should be sterically hindered from reaching the catalytic sites. Here we examine effects of substrate size on rates of cleavage by 20S proteasomes of Methanosarcina thermophila. Synthetic chromogenic substrates of variable size were prepared by linking a constant substrate group (Ala-Ala-Phe-p-nitroanilide) to a linear polymer (methoxypolyethylene glycol) with variable chain length. The smallest macromolecular substrates were cleaved more efficiently than free tripeptide substrate, and cleavage of macromolecular substrates was saturable, whereas cleavage of free tripeptide substrate was not, indicating mechanistic differences between the cleavage of large and small substrates. Rates of macromolecular substrate cleavage decreased progressively up to 10-fold as the size of the polymeric component of substrates increased. Macromolecular synthetic substrates appear to be better models of proteasome action on natural protein substrates and demonstrate substrate size selectivity of proteasomes.
机译:蛋白酶体是在其管腔表面具有蛋白水解活性的管状复合物,因此应在空间上阻止大底物到达催化位点。在这里,我们研究了基质大小对嗜热甲烷单胞菌的20S蛋白酶切割速率的影响。通过将恒定的底物基团(Ala-Ala-Phe-对硝基苯胺)连接到具有可变链长的线性聚合物(甲氧基聚乙二醇)上,可以制备出大小可变的合成发色底物。最小的大分子底物的裂解比游离的三肽底物更有效,并且大分子底物的裂解是可饱和的,而游离的三肽底物的裂解则不饱和,这表明大和小的底物裂解的机理不同。随着底物的聚合物组分的尺寸增加,大分子底物的裂解速率逐渐降低直至10倍。大分子合成底物似乎是蛋白酶对天然蛋白质底物作用的更好模型,并证明了蛋白酶体的底物大小选择性。

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