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Sid1,一个启动玉米黑粉菌中铁载体生物合成的基因:分子特征、铁调控及其在植物致病性中的作用

sid1, a gene initiating siderophore biosynthesis in Ustilago maydis: molecular characterization, regulation by iron, and role in phytopathogenicity.

作者信息

Mei B, Budde A D, Leong S A

机构信息

Department of Plant Pathology, University of Wisconsin, Madison 53706.

出版信息

Proc Natl Acad Sci U S A. 1993 Feb 1;90(3):903-7. doi: 10.1073/pnas.90.3.903.

Abstract

Iron uptake in Ustilago maydis is mediated by production of extracellular hydroxamate siderophores. L-Or-nithine N5-oxygenase catalyzes hydroxylation of L-ornithine, which is the first committed step of ferrichrome and ferrichrome A biosynthesis in U. maydis. We have characterized sid1, a gene coding for this enzyme, by complementation in trans, gene disruption, and DNA sequence analysis. A comparison of genomic DNA and cDNA sequences has shown that the gene is interrupted by three introns. The putative amino acid sequence revealed similarity with Escherichia coli lysine N6-hydroxylase, which catalyzes the hydroxylation of lysine, the first step in biosynthesis of aerobactin. Two transcription initiation points have been determined, both by PCR amplification of the 5' end of the mRNA and by primer extension. A 2.3-kb transcript which accumulates in cells grown under low iron conditions was detected by Northern hybridization. A less abundant 2.7-kb transcript was observed in cells grown in iron-containing medium. By contrast, constitutive accumulation of the 2.3-kb transcript was observed in a mutant carrying a disruption of urbs1, a gene involved in regulation of siderophore biosynthesis. Analysis of the pathogenicity of mutants carrying a null allele of sid1 suggests that the biosynthetic pathway of siderophores does not play an essential role in the infection of maize by U. maydis.

摘要

玉米黑粉菌中的铁摄取是由细胞外异羟肟酸型铁载体的产生介导的。L - 鸟氨酸N5 - 加氧酶催化L - 鸟氨酸的羟基化,这是玉米黑粉菌中铁色素和铁色素A生物合成的第一个关键步骤。我们通过反式互补、基因破坏和DNA序列分析对编码该酶的基因sid1进行了表征。基因组DNA和cDNA序列的比较表明该基因被三个内含子中断。推测的氨基酸序列显示与大肠杆菌赖氨酸N6 - 羟化酶相似,后者催化赖氨酸的羟基化,这是气杆菌素生物合成的第一步。通过mRNA 5'端的PCR扩增和引物延伸确定了两个转录起始点。通过Northern杂交检测到在低铁条件下生长的细胞中积累的一个2.3 kb的转录本。在含铁培养基中生长的细胞中观察到一个丰度较低的2.7 kb转录本。相比之下,在携带urbs1(一个参与铁载体生物合成调控的基因)破坏突变体中观察到2.3 kb转录本的组成型积累。对携带sid1无效等位基因的突变体的致病性分析表明,铁载体的生物合成途径在玉米黑粉菌感染玉米的过程中不发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fbd7/45778/18a3fe36b3a0/pnas01101-0132-a.jpg

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