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A family of protein-deglutamylating enzymes associated with neurodegeneration

机译:与神经变性相关的蛋白质脱谷氨酰化酶家族

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摘要

Polyglutamylation is a posttranslational modification that generates glutamate side chains on tubulins and other proteins. Although this modification has been shown to be reversible, little is known about the enzymes catalyzing deglutamylation. Here we describe the enzymatic mechanism of protein deglutamylation by members of the cytosolic carboxypeptidase (CCP) family. Three enzymes (CCP1, CCP4, and CCP6) catalyze the shortening of polyglutamate chains and a fourth (CCP5) specifically removes the branching point glutamates. In addition, CCP1, CCP4, and CCP6 also remove gene-encoded glutamates from the carboxyl termini of proteins. Accordingly, we show that these enzymes convert detyrosinated tubulin into Δ2-tubulin and also modify other substrates, including myosin light chain kinase 1. We further analyze Purkinje cell degeneration (pcd) mice that lack functional CCP1 and show that microtubule hyperglutamylation is directly linked to neurodegeneration. Taken together, our results reveal that controlling the length of the polyglutamate side chains on tubulin is critical for neuronal survival.
机译:聚谷氨酰化是翻译后修饰,可在微管蛋白和其他蛋白质上生成谷氨酸侧链。尽管已表明这种修饰是可逆的,但对催化脱谷氨酰化的酶知之甚少。在这里,我们描述了胞质羧肽酶(CCP)家族成员蛋白质脱谷氨酰化的酶促机制。三种酶(CCP1,CCP4和CCP6)催化多聚谷氨酸链的缩短,第四个酶(CCP5)专门去除谷氨酸的分支点。此外,CCP1,CCP4和CCP6还从蛋白质的羧基末端去除了基因编码的谷氨酸盐。因此,我们表明这些酶将脱酪氨酸微管蛋白转化为Δ2-微管蛋白,并且还修饰了其他底物,包括肌球蛋白轻链激酶1。我们进一步分析了缺乏功能性CCP1的Purkinje细胞变性(pcd)小鼠,并表明微管过度谷氨酰化直接与神经变性。两者合计,我们的结果表明,控制微管蛋白上聚谷氨酸侧链的长度对于神经元存活至关重要。

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