Hayden M A, Huang I Y, Iliopoulos G, Orozco M, Ashley G W
Department of Chemistry and of Biochemistry, Northwestern University, Evanston, Illinois 60208.
Biochemistry. 1993 Apr 13;32(14):3778-82. doi: 10.1021/bi00065a033.
The abilities of the Escherichia coli lipoic acid auxotrophs W1485-lip2 and JRG33-lip9 to grow on succinate medium in the presence of octanoate, 8-mercaptooctanoate, or 6-mercaptooctanoate have been determined. Both organisms are mutated in lipA. Neither organism can use octanoate or 6-mercaptooctanoate for production of lipoate, but the lip2 allele can use 8-mercaptooctanoate. Chromosomal DNA from the auxotrophs was amplified by PCR using primers derived from the DNA sequence of wild-type lipA and then sequenced. Both mutants contain single G/C to A/T mutations in lipA, resulting in conversion of Ser307 into Phe in W1485-lip2 and Glu195 into Lys in JRG33-lip9. These results support the hypothesis that lipA is involved in the sulfur insertion step(s) of lipoate biosynthesis and indicate that it is possible to selectively block formation of the C8-S bond through suitable mutation in lipA.
已测定大肠杆菌硫辛酸营养缺陷型菌株W1485 - lip2和JRG33 - lip9在辛酸盐、8 - 巯基辛酸盐或6 - 巯基辛酸盐存在的情况下于琥珀酸盐培养基上生长的能力。这两种菌株在lipA基因上发生了突变。两种菌株都不能利用辛酸盐或6 - 巯基辛酸盐来合成硫辛酸,但lip2等位基因可以利用8 - 巯基辛酸盐。使用源自野生型lipA DNA序列的引物通过PCR扩增营养缺陷型菌株的染色体DNA,然后进行测序。两个突变体在lipA基因中都含有单个G/C到A/T的突变,导致W1485 - lip2中Ser307转变为Phe,JRG33 - lip9中Glu195转变为Lys。这些结果支持了lipA参与硫辛酸生物合成中硫插入步骤的假说,并表明通过在lipA中进行合适的突变有可能选择性地阻断C8 - S键的形成。