首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >A protease inhibitor blocks SOS functions in Escherichia coli: antipain prevents lambda repressor inactivation ultraviolet mutagenesis and filamentous growth.
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A protease inhibitor blocks SOS functions in Escherichia coli: antipain prevents lambda repressor inactivation ultraviolet mutagenesis and filamentous growth.

机译:蛋白酶抑制剂可阻断大肠杆菌中的SOS功能:抗痛剂可防止λ阻遏物失活紫外线诱变和丝状生长。

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摘要

Inhibition of DNA synthesis in E. coli by treatment with carcinogenic and mutagenic agents results in the coordinate expression of a group of diverse functions (SOS functions) including lambda prophage induction, filamentous growth, and an error-prone DNA repair activity (SOS repair) believed to be responsible for ultraviolet mutagenesis. It has been proposed that this SOS induction proceeds via irreversible proteolytic inactivation of repressor(s) for SOS functions. To test this hypothesis, we investigated the effect of a protease inhibitor, antipain [(1-carboxy-2-phenylethyl)carbamoyl-L-arginyl-L-valylargininal], on SOS induction. We found that 0.5 mM antipain (which has no effect on cell growth, overall RNA and protein synthesis, or induction of beta-galactosidase) drastically decreases mutagenesis. Antipain also blocks expression of thermally induced mutator activity (another manifestation of SOS repair) and filamentous growth in a tif-1 mutant that expresses SOS functions at 42 degrees without inhibition of DNA synthesis or detectable DNA damage. Furthermore, antipain inhibits thermal induction of lambda prophage in the tif-1 mutant without affecting the kinetics of thermal induction of lambdacI857 prophage. This lambda mutant codes a temperature-sensitive repressor that is directly destroyed by heat and does not require the SOS induction pathway for inactivation at 42 degrees. From our results we conclude that antipain inhibits lambda prophage induction by blocking proteolytic inactivation of lambda repressor and that it inhibits the induction or expression of SOS repair and filamentous growth. Our results suggest a role for proteolytic cleavage in the regulation of SOS functions.
机译:通过用致癌和诱变剂处理来抑制大肠杆菌中的DNA合成,会导致一组不同功能(SOS功能)的协同表达,包括λ噬菌体诱导,丝状生长和容易出错的DNA修复活性(SOS修复)被认为与紫外线诱变有关。已经提出该SOS诱导通过用于SOS功能的阻遏物的不可逆的蛋白水解失活而进行。为了检验该假设,我们研究了蛋白酶抑制剂抗痛药[(1-羧基-2-苯乙基)氨基甲酰基-L-精氨酰基-L-降血糖素]对SOS诱导的影响。我们发现0.5 mM的抗痛药(对细胞生长,总RNA和蛋白质合成或β-半乳糖苷酶的诱导没有影响)大大降低了诱变作用。 Antipain还可阻止热诱导突变体活性的表达(SOS修复的另一种表现)和tif-1突变体中的丝状生长,该突变体在42度表达SOS功能而不会抑制DNA合成或可检测到的DNA损伤。此外,抗痛剂可抑制tif-1突变体中λ噬菌体的热诱导,而不会影响lambdacI857噬菌体的热诱导动力学。该lambda突变体编码温度敏感的阻遏物,该阻遏物被热量直接破坏,​​不需要SOS诱导途径即可在42度灭活。从我们的结果中我们得出结论,抗痛药通过阻止λ阻遏蛋白的蛋白水解失活来抑制λ噬菌体诱导,并且它抑制SOS修复和丝状生长的诱导或表达。我们的结果表明蛋白水解裂解在调节SOS功能中的作用。

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