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Target-directed proteolysis at the ribosome

机译:核糖体的靶标蛋白水解

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Target directed proteolysis allows specific processing of proteins in vivo. This method uses tobacco etch virus (TEV) Nla protease that recognizes a seven-residue consensus sequence. Because of its specificity, proteins engineered to contain a cleavage site are proteolysed, whereas other proteins remain unaffected. Therefore, this approach can be used to study the structure and function of target proteins in their natural environment within living cells. One application is the conditional inactivation of essential proteins, which is based on the concept that a target containing a recognition site can be inactivated by coexpressed TEV protease. We have previously identified one site in the secretion factor SecA that tolerated a TEV protease site insert. Coexpression of TEV protease in the cytoplasm led to incomplete cleavage and a mild secretion defect. To improve the efficiency of proteolysis, TEV protease was attached to the ribosome. We show here that cleaving SecA under these conditions is one way of increasing the efficiency of target directed proteolysis. The implications of recruiting novel biological activities to ribosomes are discussed.
机译:靶标定向蛋白水解可以在体内对蛋白质进行特定处理。此方法使用识别七残基共有序列的烟草蚀刻病毒(TEV)Nla蛋白酶。由于其特异性,被工程化为包含切割位点的蛋白质被蛋白水解,而其他蛋白质则不受影响。因此,该方法可用于研究活细胞内天然环境中靶蛋白的结构和功能。一种应用是必需蛋白质的条件失活,其基于这样的概念,即含有识别位点的靶标可以被共表达的TEV蛋白酶失活。我们先前已经确定了分泌因子SecA中一个可以耐受TEV蛋白酶位点插入的位点。 TEV蛋白酶在细胞质中的共表达导致切割不完全和轻度分泌缺陷。为了提高蛋白水解效率,将TEV蛋白酶连接到核糖体上。我们在这里表明,在这些条件下切割SecA是提高目标定向蛋白水解效率的一种方法。讨论了向核糖体募集新的生物活性的意义。

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