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trans-Complementation assay establishes the role of proregion hydrophobic amino acid residues in the biosynthesis of Saccharomyces cerevisae Kex2p endoprotease

机译:反式互补分析确定了酿酒酵母Kex2p内切蛋白酶在生物合成中的区域疏水性氨基酸残基的作用

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The proregion of Saccharomyces cerevisiae endoprotease Kex2p is essential for the biosynthesis of an active enzyme. It has been suggested that the proregion acts in the endoplasmic reticulum to catalyse folding of the enzyme. To identify amino acid residues important for proregion function, we used an in vivo system in which the Kex2p proregion can act in trans to activate a Kex2p enzyme synthesized without its proregion. Activation of Kex2p by wild-type and mutated proregions revealed the essential role of hydrophobic residues F-37, V-39 and F-70 in enzyme activation. Further exploration of the role of these residues by in vitro inhibition of Kex2p activity by its proregion indicated that they are essential to form the proregion/enzyme bimolecular complex. In contrast, basic residues K-108 and R-109, located in the C-terminus of the proregion, are not involved in complex formation but are necessary for the biosynthesis of an active enzyme.
机译:酿酒酵母内切蛋白酶Kex2p的前区对于活性酶的生物合成至关重要。已经提出,该前区在内质网中起作用以催化酶的折叠。为了鉴定对proregion功能重要的氨基酸残基,我们使用了一个体内系统,在该系统中,Kex2p proregion可以反式激活以激活没有其proregion的合成的Kex2p酶。野生型和突变前区对Kex2p的激活揭示了疏水残基F-37,V-39和F-70在酶激活中的重要作用。通过其前区对Kex2p活性的体外抑制进一步研究这些残基的作用,表明它们对于形成前区/酶双分子复合物至关重要。相反,位于前区C端的碱性残基K-108和R-109不参与复合物的形成,但对于活性酶的生物合成是必需的。

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