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Cloning and expression of the Vibrio cholerae neuraminidase gene nanH in Escherichia coli.

机译:霍乱弧菌神经氨酸酶基因nanH的克隆和表达。

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摘要

A cosmid gene bank of Vibrio cholerae 395, classical Ogawa, was screened in Escherichia coli HB101 for expression of the vibrio neuraminidase (NANase) gene nanH (N-acylneuraminate glycohydrolase). Positive clones were identified by their ability to cleave the fluorogenic NANase substrate 2'-(4-methylumbelliferyl)-alpha-D-N-acetylneuraminic acid. Seven NANase-positive clones were detected after screening 683 cosmid isolates with a rapid, qualitative plate assay method. The nanH gene was subcloned from one of the cosmids and was located within a 4.8-kilobase-pair BglII restriction endonuclease fragment. Evidence that nanH was the NANase structural gene was obtained by transposon mutagenesis and by purification and comparison of the cloned gene product with the secreted NANase purified from the parent V. cholerae strain. The sequence of the first 20 amino-terminal amino acids of the secreted NANase purified from V. cholerae was determined by automated Edman degradation and matched perfectly with the amino acid sequence predicted from nucleotide sequencing of nanH. The sequence data also revealed the existence of a potential signal peptide that was apparently processed from NANase in both V. cholerae and E. coli. In contrast to V. cholerae, E. coli nanH+ clones did not secrete NANase into the growth medium, retaining most of the enzyme in the periplasmic compartment. Kinetic studies in V. cholerae showed that nanH expression and NANase secretion were temporally correlated as cells in batch culture entered late-exponential-phase growth. Similar kinetics were observed in at least one of the E. coli nanH+ clones, suggesting that nanH expression in E. coli might be controlled by some of the same signals as in the parent V. cholerae strain.
机译:在大肠杆菌HB101中筛选了霍乱弧菌395型粘粒基因库(经典的小川),以表达弧菌神经氨酸酶(NANase)基因nanH(N-酰基神经氨酸糖水解酶)的表达。通过其裂解荧光NANase底物2'-(4-甲基伞形酮)-α-D-N-乙酰神经氨酸的能力来鉴定阳性克隆。用快速,定性的平板分析方法筛选了683个粘粒分离物后,检测到七个NANase阳性克隆。 nanH基因从一种粘粒亚克隆,位于4.8碱基对的BglII限制性核酸内切酶片段内。通过转座子诱变以及通过克隆克隆的基因产物与从亲代霍乱弧菌菌株中纯化的分泌型NANase的纯化和比较,获得了nanH是NANase结构基因的证据。从霍乱弧菌纯化的分泌的NANase的前20个氨基酸末端的氨基酸序列通过自动Edman降解来确定,并与nanH核苷酸测序预测的氨基酸序列完全匹配。序列数据还揭示了在霍乱弧菌和大肠杆菌中均存在明显由NANase处理的潜在信号肽。与霍乱弧菌相反,大肠杆菌nanH +克隆不会将NANase分泌到生长培养基中,而是将大部分酶保留在周质区室中。霍乱弧菌的动力学研究表明,随着分批培养中的细胞进入指数后期生长,nanH表达和NANase分泌在时间上相关。在至少一个大肠杆菌nanH +克隆中观察到了相似的动力学,这表明大肠杆菌中nanH的表达可能受与霍乱弧菌菌株相同的一些信号的控制。

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