Johnson Deborah C, Unciuleac Mihaela-Carmen, Dean Dennis R
Department of Biochemistry, Virginia Tech, Blacksburg, 24061, USA.
J Bacteriol. 2006 Nov;188(21):7551-61. doi: 10.1128/JB.00596-06. Epub 2006 Aug 25.
A system for the controlled expression of genes in Azotobacter vinelandii by using genomic fusions to the sucrose catabolic regulon was developed. This system was used for the functional analysis of the A. vinelandii isc genes, whose products are involved in the maturation of [Fe-S] proteins. For this analysis, the scrX gene, contained within the sucrose catabolic regulon, was replaced by the contiguous A. vinelandii iscS, iscU, iscA, hscB, hscA, fdx, and iscX genes, resulting in duplicate genomic copies of these genes: one whose expression is directed by the normal isc regulatory elements (Pisc) and the other whose expression is directed by the scrX promoter (PscrX). Functional analysis of [Fe-S] protein maturation components was achieved by placing a mutation within a particular Pisc-controlled gene with subsequent repression of the corresponding PscrX-controlled component by growth on glucose as the carbon source. This experimental strategy was used to show that IscS, IscU, HscBA, and Fdx are essential in A. vinelandii and that their depletion results in a deficiency in the maturation of aconitase, an enzyme that requires a [4Fe-4S] cluster for its catalytic activity. Depletion of IscA results in a null growth phenotype only when cells are cultured under conditions of elevated oxygen, marking the first null phenotype associated with the loss of a bacterial IscA-type protein. Furthermore, the null growth phenotype of cells depleted of HscBA could be partially reversed by culturing cells under conditions of low oxygen. Conserved amino acid residues within IscS, IscU, and IscA that are essential for their respective functions and/or whose replacement results in a partial or complete dominant-negative growth phenotype were also identified using this system.
通过构建与蔗糖分解代谢调节子的基因组融合体,开发了一种用于控制维涅兰德固氮菌基因表达的系统。该系统用于维涅兰德固氮菌isc基因的功能分析,其产物参与[Fe-S]蛋白的成熟。为此分析,将蔗糖分解代谢调节子中的scrX基因替换为相邻的维涅兰德固氮菌iscS、iscU、iscA、hscB、hscA、fdx和iscX基因,从而产生这些基因的重复基因组拷贝:一个其表达由正常的isc调控元件(Pisc)指导,另一个其表达由scrX启动子(PscrX)指导。通过在特定的Pisc控制基因中引入突变,随后在以葡萄糖作为碳源生长时抑制相应的PscrX控制成分,实现了对[Fe-S]蛋白成熟成分的功能分析。该实验策略用于表明IscS、IscU、HscBA和Fdx在维涅兰德固氮菌中是必需的,并且它们的缺失导致乌头酸酶成熟缺陷,乌头酸酶是一种其催化活性需要[4Fe-4S]簇的酶。仅当细胞在高氧条件下培养时,IscA的缺失才导致无生长表型,这标志着与细菌IscA类型蛋白缺失相关的首个无表型。此外,在低氧条件下培养细胞可部分逆转HscBA缺失细胞的无生长表型。使用该系统还鉴定了IscS、IscU和IscA中对其各自功能至关重要和/或其替换导致部分或完全显性负生长表型的保守氨基酸残基。