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Roles of DegP in Prevention of Protein Misfolding in the Periplasm upon Overexpression of Penicillin Acylase in Escherichia coli

机译:DegP在预防青霉素酰化酶在大肠杆菌中过表达时预防周质蛋白质错误折叠中的作用

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摘要

Enhancement of the production of soluble recombinant penicillin acylase in Escherichia coli via coexpression of a periplasmic protease/chaperone, DegP, was demonstrated. Coexpression of DegP resulted in a shift of in vivo penicillin acylase (PAC) synthesis flux from the nonproductive pathway to the productive one when pac was overexpressed. The number of inclusion bodies, which consist primarily of protein aggregates of PAC precursors in the periplasm, was highly reduced, and the specific PAC activity was highly increased. DegP was a heat shock protein induced in response to pac overexpression, suggesting that the protein could possibly suppress the physiological toxicity caused by pac overexpression. Coexpression of DegPS210A, a DegP mutant without protease activity but retaining chaperone activity, could not suppress the physiological toxicity, suggesting that DegP protease activity was primarily responsible for the suppression, possibly by degradation of abnormal proteins when pac was overexpressed. However, a shortage of periplasmic protease activity was not the only reason for the deterioration in culture performance upon pac overexpression because coexpression of a DegP-homologous periplasmic protease, DegQ or DegS, could not suppress the physiological toxicity. The chaperone activity of DegP is proposed to be another possible factor contributing to the suppression.
机译:通过共表达周质蛋白酶/分子伴侣DegP,提高了大肠杆菌中可溶性重组青霉素酰基转移酶的产量。当pac过度表达时,DegP的共表达导致体内青霉素酰化酶(PAC)合成通量从非生产途径转移到生产途径。主要由周质中PAC前体的蛋白质聚集体组成的包涵体的数量大大减少,并且PAC的比活性大大提高。 DegP是一种对pac过表达引起的热激蛋白,提示该蛋白可能抑制pac过表达引起的生理毒性。 DegPS210A(一种没有蛋白酶活性但保留了伴侣活性的DegP突变体)的共表达不能抑制生理毒性,表明DegP蛋白酶活性主要是抑制作用,可能是由于pac过表达时异常蛋白质的降解。但是,周质蛋白酶活性的不足并不是pac过表达时培养性能下降的唯一原因,因为DegP同源周质蛋白酶DegQ或DegS的共表达不能抑制生理毒性。提出DegP的伴侣活性是有助于抑制的另一个可能的因素。

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