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非异形胞蓝藻颤藻中固氮酶组分合成的钼独立性

Molybdenum independence of nitrogenase component synthesis in the non-heterocystous cyanobacterium Plectonema.

作者信息

Nagatani H H, Haselkorn R

出版信息

J Bacteriol. 1978 May;134(2):597-605. doi: 10.1128/jb.134.2.597-605.1978.

Abstract

The cyanobacterium Plectonema boryanum (IU 594-UTEX 594) fixes N2 only in the absence of combined N and of O2. We induced nitrogenase by transfer to anaerobic N-free medium and studied the effect of Mo starvation on nitrogenase activity and synthesis. Activity was first detected within 3 h after transfer by the acetylene reduction assay in controls, increasing for at least 25 h. Cells grown on nitrate and Mo and then transferred to N-free, Mo-free medium produced 8% of the control nitrogenase activity. Addition of W to the Mo-free medium reduced the activity to 0.5%. Under both Mo starvation conditions, nitrogenase protein components were synthesized. Component II of the cyanobacterial enzyme was detected by in vitro complementation with Mo-containing component I from Klebsiella pneumoniae or Azotobacter vinelandii but not Clostridium pasteurianum. Component I activity was restored by addition of Mo to cultures in which new enzyme synthesis was blocked by chloramphenicol. Acidified extracts of Plectonema induced in Mo-containing medium contained the Fe-Mo cofactor required to activate extracts of the Azotobacter mutant UW45 in vitro, but they did not activate extracts of Mo-starved Plectonema. Analysis of 35SO4(2-)-labeled proteins by polyacrylamide gel electrophoresis suggested that Mo is required for the conversion of a high-molecular-weight precursor to component I in Plectonema.

摘要

蓝藻颤藻(IU 594 - UTEX 594)仅在不存在化合态氮和氧气的情况下固定氮气。我们通过转移至厌氧无氮培养基来诱导固氮酶,并研究了钼饥饿对固氮酶活性和合成的影响。在对照中,通过乙炔还原测定法在转移后3小时内首次检测到活性,并至少持续增加25小时。在硝酸盐和钼上生长然后转移至无氮、无钼培养基的细胞产生的固氮酶活性为对照的8%。向无钼培养基中添加钨将活性降低至0.5%。在两种钼饥饿条件下,均合成了固氮酶蛋白组分。通过与来自肺炎克雷伯菌或棕色固氮菌而非巴氏梭菌的含钼组分I进行体外互补,检测到了蓝藻酶的组分II。在新酶合成被氯霉素阻断的培养物中添加钼可恢复组分I的活性。在含钼培养基中诱导的颤藻酸化提取物含有在体外激活固氮菌突变体UW45提取物所需的铁钼辅因子,但它们不能激活钼饥饿的颤藻提取物。通过聚丙烯酰胺凝胶电泳对35SO4(2 - )标记的蛋白质进行分析表明,钼是颤藻中高分子量前体转化为组分I所必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0686/222292/e598dc0e3cf5/jbacter00294-0256-a.jpg

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