Cereda Angelo, Carpen Aristodemo, Picariello Gianluca, Tedeschi Gabriella, Pagani Silvia
Dipartimento di Scienze Molecolari Agroalimentari, Università di Milano, 20133, Milano, Italy.
Biochem J. 2009 Feb 15;418(1):135-43. doi: 10.1042/BJ20081218.
The rhdA gene of Azotobacter vinelandii codes for RhdA, a rhodanese-domain protein with an active-site loop structure which has not currently been found in proteins of the rhodanese-homology superfamily. Considering the lack of information on the functional role of the ubiquitous rhodaneses, in the present study we examined the in vivo functions of RhdA by using an A. vinelandii mutant strain (MV474), in which the rhdA gene was disrupted by deletion. Preliminary phenotypic characterization of the rhdA mutant suggested that RhdA could exert protection over Fe-S enzymes, which are easy targets for oxidative damage. To highlight the role of RhdA in preserving sensitive Fe-S clusters, in the present study we analysed the defects of the rhdA-null strain by exploiting growth conditions which resulted in enhancing the catalytic deficiency of enzymes with vulnerable Fe-S clusters. We found that a lack of RhdA impaired A. vinelandii growth in the presence of gluconate, a carbon source that activates the Entner-Doudoroff pathway in which the first enzyme, 6-phosphogluconate dehydratase, employs a 4Fe-4S cluster as an active-site catalyst. By combining proteomics, enzymatic profiles and model systems to generate oxidative stress, evidence is provided that to rescue the effects of a lack of RhdA, A. vinelandii needed to activate defensive activities against oxidative damage. The possible functionality of RhdA as a redox switch which helps A. vinelandii in maintaining the cellular redox balance was investigated by using an in vitro model system that demonstrated reversible chemical modifications in the highly reactive RhdA Cys(230) thiol.
棕色固氮菌的rhdA基因编码RhdA,一种具有活性位点环结构的硫氰酸酶结构域蛋白,目前在硫氰酸酶同源超家族的蛋白质中尚未发现这种结构。考虑到关于普遍存在的硫氰酸酶功能作用的信息匮乏,在本研究中,我们通过使用棕色固氮菌突变株(MV474)来研究RhdA的体内功能,在该突变株中,rhdA基因通过缺失被破坏。rhdA突变体的初步表型特征表明,RhdA可以对铁硫酶起到保护作用,铁硫酶是氧化损伤的易攻击目标。为了突出RhdA在保护敏感铁硫簇中的作用,在本研究中,我们通过利用生长条件来分析rhdA缺失菌株的缺陷,这些生长条件会导致具有易损铁硫簇的酶的催化缺陷增强。我们发现,在存在葡萄糖酸盐的情况下,缺乏RhdA会损害棕色固氮菌的生长,葡萄糖酸盐是一种碳源,可激活Entner-Doudoroff途径,其中第一种酶6-磷酸葡萄糖酸脱水酶使用4Fe-4S簇作为活性位点催化剂。通过结合蛋白质组学、酶谱分析和产生氧化应激的模型系统,有证据表明,为了挽救缺乏RhdA的影响,棕色固氮菌需要激活针对氧化损伤的防御活性。通过使用体外模型系统研究了RhdA作为氧化还原开关帮助棕色固氮菌维持细胞氧化还原平衡的可能功能,该模型系统证明了高反应性的RhdA Cys(230)硫醇中存在可逆的化学修饰。