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Characterization of Erwinia chrysanthemi extracellular proteases: cloning and expression of the protease genes in Escherichia coli.

机译:菊花欧文氏菌胞外蛋白酶的表征:大肠杆菌中蛋白酶基因的克隆和表达。

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摘要

Erwinia chrysanthemi, a phytopathogenic enterobacterium, secretes three antigenically and structurally distinct proteases, A, B, and C and produces a protease inhibitor, a low-molecular-weight, heat-stable protein which remains mostly intracellular and which binds specifically to the A, B, and C proteases. The structural genes for proteases A, B, and C and for the inhibitor are clustered on a ca. 40-kilobase DNA fragment present in cosmid pEW4. Escherichia coli strains harboring pEW4 secrete the three proteases into the medium during the exponential phase of growth, without intracellular accumulation and in the absence of detectable cell lysis. An 8.5-kilobase EcoRI fragment derived from the cosmid encodes proteases B and C and the inhibitor as well as functions involved in the synthesis or secretion (or both) of the proteases. The inhibitor is not required for protease synthesis or secretion.
机译:植物致病性肠杆菌欧文氏杆菌(Erwinia chrysanthemi)分泌三种抗原和结构上不同的蛋白酶A,B和C,并产生一种蛋白酶抑制剂,一种低分子量,热稳定的蛋白,主要保留在细胞内,并与A特异性结合, B和C蛋白酶。蛋白酶A,B和C以及抑制剂的结构基因聚集在ca上。粘粒pEW4中存在40碱基对的DNA片段。带有pEW4的大肠杆菌菌株在生长的指数阶段将三种蛋白酶分泌到培养基中,没有细胞内积累,也没有可检测的细胞裂解。源自粘粒的8.5碱基碱基的EcoRI片段编码蛋白酶B和C和抑制剂,以及蛋白酶合成或分泌(或两者)涉及的功能。蛋白酶合成或分泌不需要抑制剂。

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