Department of Microbiology, University of Massachusetts Amherst, USA.
Can J Microbiol. 2011 Jul;57(7):547-58. doi: 10.1139/w11-047. Epub 2011 Jul 20.
Bacteria of the Geobacter clade possess two distinct ATP phosphoribosyltransferases encoded by hisG(L) and hisG(S)+hisZ to catalyze the first reaction of histidine biosynthesis. This very unusual redundancy was investigated by mutational analysis. The hisG(L), hisG(S), and hisZ genes of Geobacter sulfurreducens were deleted, effects on growth and histidine biosynthesis gene expression were evaluated, and deficiencies were complemented with plasmid-borne genes. Both hisG(L) and hisG(S)+hisZ encode functional ATP phosphoribosyltransferases. However, deletion of hisG(L) resulted in no growth defect, whereas deletion of hisG(S) delayed growth when histidine was not provided. Both deletions increased hisZ transcript abundance, and both ΔhisG(S) and ΔhisZ mutations increased hisG(L) transcript abundance. Growth with HisG(L) alone (due to deletion of either hisG(S) or hisZ) was better under nitrogen fixation conditions than when ammonium was provided. Deletion of hisZ caused growth defects under all conditions tested, with or without exogenous sources of histidine, with different patterns of histidine biosynthesis gene expression under each condition. Taken together, the data indicate that G. sulfurreducens depends primarily on the HisG(S)Z isozyme as an ATP phosphoribosyltransferase in histidine biosynthesis, and for other functions when histidine is available; however, HisG(L) also functions as ATP phosphoribosyltransferase, particularly during nitrogen fixation.
地杆菌属的细菌拥有两种不同的 ATP 磷酸核糖基转移酶,分别由 hisG(L) 和 hisG(S)+hisZ 编码,以催化组氨酸生物合成的第一步反应。这种非常不寻常的冗余性通过突变分析进行了研究。删除了 Geobacter sulfurreducens 的 hisG(L)、hisG(S) 和 hisZ 基因,评估了对生长和组氨酸生物合成基因表达的影响,并通过质粒携带的基因进行了缺陷互补。hisG(L) 和 hisG(S)+hisZ 都编码功能性的 ATP 磷酸核糖基转移酶。然而,删除 hisG(L) 不会导致生长缺陷,而删除 hisG(S) 则在没有提供组氨酸时会延迟生长。两个缺失都增加了 hisZ 转录本的丰度,并且 hisG(S) 和 hisZ 缺失都增加了 hisG(L) 转录本的丰度。单独使用 HisG(L)(由于 hisG(S) 或 hisZ 的缺失)生长时,在固氮条件下比提供铵盐时更好。在没有或有外源组氨酸的情况下,缺失 hisZ 都会导致生长缺陷,每种条件下组氨酸生物合成基因表达的模式都不同。总之,这些数据表明,G. sulfurreducens 主要依赖 HisG(S)Z 同工酶作为组氨酸生物合成中的 ATP 磷酸核糖基转移酶,而在有组氨酸时则依赖其他功能;然而,HisG(L) 也作为 ATP 磷酸核糖基转移酶发挥作用,尤其是在固氮时。