White R F, Kaplan L, Birnbaum J
J Bacteriol. 1973 Jan;113(1):218-23. doi: 10.1128/jb.113.1.218-223.1973.
A pantothenate-methionine auxotroph (J741) of Pseudomonas denitrificans was isolated whose growth requirement for methionine could not be satisfied by known precursors of the amino acid, including homocysteine. However, some "methyl rich" compounds such as betaine and dimethylacetothetin (DMT) could satisfy the requirement. S-Methyl-methionine and S-adenosylmethionine were ineffective. Extracts were found to contain an enzyme, betaine-homocysteine transmethylase (BHTase), that uses betaine or DMT as a methyl donor and homocysteine as an acceptor to produce methionine. Growth of J741 in methionine leads to a total repression of the BHTase, whereas the use of DMT leads to a three- to sixfold stimulation of enzyme synthesis compared to betaine-grown cells. The pantothenate requirement is unrelated to the methionine auxotrophy, since the growth of other single auxotrophic mutants as well as revertants of J741 still have their methionine requirement satisfied by betaine or DMT. Another methionine auxotroph that could not use betaine for growth was devoid of BHTase activity.
分离出了反硝化假单胞菌的泛酸盐 - 甲硫氨酸营养缺陷型菌株(J741),其对甲硫氨酸的生长需求无法通过包括同型半胱氨酸在内的已知氨基酸前体来满足。然而,一些“富含甲基”的化合物,如甜菜碱和二甲基乙酰甜菜碱(DMT)可以满足这一需求。S - 甲基甲硫氨酸和S - 腺苷甲硫氨酸无效。发现提取物中含有一种酶,即甜菜碱 - 同型半胱氨酸转甲基酶(BHTase),它以甜菜碱或DMT作为甲基供体,同型半胱氨酸作为受体来产生甲硫氨酸。J741在甲硫氨酸中生长会导致BHTase完全受到抑制,而与在甜菜碱中生长的细胞相比,使用DMT会使酶合成受到三到六倍的刺激。泛酸盐需求与甲硫氨酸营养缺陷无关,因为其他单一营养缺陷型突变体以及J741的回复突变体的生长仍然可以通过甜菜碱或DMT来满足其对甲硫氨酸的需求。另一种不能利用甜菜碱生长的甲硫氨酸营养缺陷型菌株缺乏BHTase活性。