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点状念珠藻菌株ATCC 29133的glnB基因产物的特性:glnB或PII蛋白可能是必需的。

Characterization of the glnB gene product of Nostoc punctiforme strain ATCC 29133: glnB or the PII protein may be essential.

作者信息

Hanson Thomas E, Forchhammer Karl, de Marsac Nicole Tandeau, Meeks John C

机构信息

Section of Microbiology, University of California, One Shields Avenue, Davis, CA 95616, USA.

Lehrstuhl für Mikrobiologie der Universität München, Maria-Ward-Str. 1a, D-80638 München, Germany.

出版信息

Microbiology (Reading). 1998 Jun;144 ( Pt 6):1537-1547. doi: 10.1099/00221287-144-6-1537.

Abstract

Bacterial PII proteins, encoded by glnB genes, are central signalling molecules in nitrogen regulatory pathways and are modulated by post-translational modification in response to the cellular nitrogen status. The glnB gene was cloned from the filamentous heterocyst-forming cyanobacterium Nostoc punctiforme strain ATCC 29133 (PCC 73102) by heterologous hybridization to a Synechococcus sp. strain PCC 7942 gene fragment. Expression of the cloned gene was verified by hybridization to N. punctiforme total RNA and a single cross-reactive polypeptide was observed in immunoblots of N. punctiforme extracts probed with anti-Synechococcus 7942 PII antiserum. Modification of the purified N. punctiforme PII protein by a Synechococcus 7942 PII kinase was observed, but modified forms of PII were not detected in extracts of N. punctiforme from a variety of incubation conditions. The N. punctiforme glnB gene could not be disrupted by targeted gene replacement unless a second copy of glnB was provided in trans, suggesting that the gene or gene product is essential for growth under the conditions tested.

摘要

由glnB基因编码的细菌PII蛋白是氮调节途径中的核心信号分子,并通过翻译后修饰来响应细胞的氮状态进行调节。通过与聚球藻属(Synechococcus sp.)菌株PCC 7942基因片段进行异源杂交,从丝状异形胞形成蓝细菌点状念珠藻(Nostoc punctiforme)菌株ATCC 29133(PCC 73102)中克隆出glnB基因。通过与点状念珠藻总RNA杂交验证了克隆基因的表达,在用抗聚球藻7942 PII抗血清探测的点状念珠藻提取物的免疫印迹中观察到一条单一的交叉反应多肽。观察到聚球藻7942 PII激酶对纯化的点状念珠藻PII蛋白进行了修饰,但在来自各种培养条件的点状念珠藻提取物中未检测到PII的修饰形式。除非通过反式提供glnB的第二个拷贝,否则点状念珠藻glnB基因不能通过靶向基因置换被破坏,这表明该基因或基因产物在所测试的条件下对生长至关重要。

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