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铜绿假单胞菌突变酰胺酶与作为抑制剂的羟基脲之间的关系。

Relationship between mutant amidases of Pseudomonas aeruginosa and hydroxyurea as an inhibitor.

作者信息

Brown P R, Gregoriou M, Tata R

出版信息

Mol Gen Genet. 1978 Oct 4;165(2):213-9. doi: 10.1007/BF00269909.

Abstract

Hydroxyurea inhibited growth of Pseudomonas aeruginosa strain AI 3 on media containing either acetanilide (N-phenyl acetamide) or acetamide as sole carbon sources. Mutants resistant to hydroxyurea inhibition of growth on acetanilide (OUCH strains) and acetamide (AmOUCH strains) displayed altered growth properties on various amide media compared with the parent strain AI3. AI3 amidase, which catalyses the initial step in the metabolism of acetanilide and acetamide, was inhibited by hydroxyurea in a time-dependent reaction that was slowly reversible at pH 7.2. Compared with AI3 amidase, amidases from the OUCH mutants were much less sensitive to inhibition by hydroxyurea and showed altered substrate specificities and pH/activity profiles; amidases from the AmOUCH mutants were more sensitive to hydroxyurea inhibition but showed increased activity towards acetamide. Association of resistance to hydroxyurea inhibition with a mutation in the amidase structural gene of strain OUCH 4 was confirmed by transduction.

摘要

羟基脲在以乙酰苯胺(N-苯基乙酰胺)或乙酰胺作为唯一碳源的培养基上抑制铜绿假单胞菌AI 3菌株的生长。对羟基脲抑制在乙酰苯胺上生长具有抗性的突变体(OUCH菌株)以及对羟基脲抑制在乙酰胺上生长具有抗性的突变体(AmOUCH菌株),与亲本菌株AI3相比,在各种酰胺培养基上显示出改变的生长特性。AI3酰胺酶催化乙酰苯胺和乙酰胺代谢的第一步,在pH 7.2时,羟基脲以时间依赖性反应抑制该酶,该反应缓慢可逆。与AI3酰胺酶相比,OUCH突变体的酰胺酶对羟基脲抑制的敏感性要低得多,并且显示出改变的底物特异性和pH/活性曲线;AmOUCH突变体的酰胺酶对羟基脲抑制更敏感,但对乙酰胺的活性增加。通过转导证实了对羟基脲抑制的抗性与OUCH 4菌株酰胺酶结构基因突变的关联。

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