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固氮酶和铁硫蛋白成熟组分的可控表达揭示了两个系统之间的靶标特异性和有限的功能替代。

Controlled expression of nif and isc iron-sulfur protein maturation components reveals target specificity and limited functional replacement between the two systems.

作者信息

Dos Santos Patricia C, Johnson Deborah C, Ragle Brook E, Unciuleac Mihaela-Carmen, Dean Dennis R

机构信息

Department of Biochemistry, Virginia Polytechnic Institute and State University, Blacksburg VA 24061, USA.

出版信息

J Bacteriol. 2007 Apr;189(7):2854-62. doi: 10.1128/JB.01734-06. Epub 2007 Jan 19.

Abstract

The nitrogen-fixing organism Azotobacter vinelandii contains at least two systems that catalyze formation of [Fe-S] clusters. One of these systems is encoded by nif genes, whose products supply [Fe-S] clusters required for maturation of nitrogenase. The other system is encoded by isc genes, whose products are required for maturation of [Fe-S] proteins that participate in general metabolic processes. The two systems are similar in that they include an enzyme for the mobilization of sulfur (NifS or IscS) and an assembly scaffold (NifU or IscU) upon which [Fe-S] clusters are formed. Normal cellular levels of the Nif system, which supplies [Fe-S] clusters for the maturation of nitrogenase, cannot also supply [Fe-S] clusters for the maturation of other cellular [Fe-S] proteins. Conversely, when produced at the normal physiological levels, the Isc system cannot supply [Fe-S] clusters for the maturation of nitrogenase. In the present work we found that such target specificity for IscU can be overcome by elevated production of NifU. We also found that NifU, when expressed at normal levels, is able to partially replace the function of IscU if cells are cultured under low-oxygen-availability conditions. In contrast to the situation with IscU, we could not establish conditions in which the function of IscS could be replaced by NifS. We also found that elevated expression of the Isc components, as a result of deletion of the regulatory iscR gene, improved the capacity for nitrogen-fixing growth of strains deficient in either NifU or NifS.

摘要

固氮生物维涅兰德固氮菌至少含有两种催化[Fe-S]簇形成的系统。其中一个系统由nif基因编码,其产物为固氮酶成熟提供所需的[Fe-S]簇。另一个系统由isc基因编码,其产物是参与一般代谢过程的[Fe-S]蛋白成熟所必需的。这两个系统的相似之处在于,它们都包括一种用于硫动员的酶(NifS或IscS)和一个组装支架(NifU或IscU),[Fe-S]簇在其上形成。为固氮酶成熟提供[Fe-S]簇的Nif系统的正常细胞水平,不能同时为其他细胞[Fe-S]蛋白的成熟提供[Fe-S]簇。相反,当以正常生理水平产生时,Isc系统不能为固氮酶的成熟提供[Fe-S]簇。在本研究中,我们发现通过提高NifU的产量可以克服IscU的这种靶标特异性。我们还发现,当以正常水平表达时,如果细胞在低氧可用性条件下培养,NifU能够部分替代IscU的功能。与IscU的情况不同,我们无法建立NifS可以替代IscS功能的条件。我们还发现,由于调控iscR基因的缺失,Isc组分的表达升高,提高了缺乏NifU或NifS的菌株的固氮生长能力。

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