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S-腺苷甲硫氨酸合成酶活性的降低会增加自发形成孢子的可能性。

A decrease in S-adenosylmethionine synthetase activity increases the probability of spontaneous sporulation.

作者信息

Ochi K, Freese E

出版信息

J Bacteriol. 1982 Oct;152(1):400-10. doi: 10.1128/jb.152.1.400-410.1982.

Abstract

Starting with a relaxed (relA) strain, mutants with reduced activity of adenosine triphosphate:L-methionine S-adenosyl transferase (EC 2.5.1.6; SAM synthetase) were isolated in Bacillus subtilis. One such mutant (gene symbol metE1) had only 3% of the normal SAM synthetase activity but grew almost as well as the parent strain. Another mutant was isolated (gene symbol spdC1) as being able to sporulate continually at a high frequency; it had one-half the normal SAM synthetase activity at 33 degrees C. Both mutants continually and spontaneously entered spore development at a higher frequency than the parent strain in a medium containing excess glucose, ammonium ions, and phosphate. Sporulation was prevented by a high concentration of SAM (1 mM or more) or by the combination of adenosine and methionine (0.5 mM or more each), both of which are precursors of SAM. In contrast to this continual increase in the spore titer, addition of decoyinine, an inhibitor of GMP synthetase, rapidly initiated massive sporulation. Various amino acid analogs also induced sporulation in the relA strain, the methionine analogs ethionine and selenomethionine being most effective.

摘要

从松弛型(relA)菌株开始,在枯草芽孢杆菌中分离出三磷酸腺苷:L-甲硫氨酸S-腺苷转移酶(EC 2.5.1.6;SAM合成酶)活性降低的突变体。其中一个这样的突变体(基因符号metE1)的SAM合成酶活性仅为正常活性的3%,但其生长情况几乎与亲本菌株相同。另一个突变体(基因符号spdC1)被分离出来,其能够以高频率持续产孢;在33℃时,它的SAM合成酶活性为正常活性的一半。在含有过量葡萄糖、铵离子和磷酸盐的培养基中,这两个突变体持续且自发地进入孢子发育的频率均高于亲本菌株。高浓度的SAM(1 mM或更高)或腺苷与甲硫氨酸的组合(每种0.5 mM或更高)可阻止产孢,这两种物质都是SAM的前体。与孢子滴度的这种持续增加相反,添加鸟苷酸合成酶抑制剂脱氧野尻霉素会迅速引发大量产孢。各种氨基酸类似物也能在relA菌株中诱导产孢,其中甲硫氨酸类似物乙硫氨酸和硒代甲硫氨酸最为有效。

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