Lepo J E, Wyss O, Tabita F R
Biochim Biophys Acta. 1982 Jun 24;704(3):414-21. doi: 10.1016/0167-4838(82)90062-0.
We have investigated the regulation of the activity and synthesis of the glutamine synthetase (l-glutamate:ammonia ligase (ADP-forming), EC (6.3.1.2) of Azotobacter vinelandii. Synthesis of the enzyme was not repressed by NH+4 and/or a number of amino acids in the growth medium; however, biosynthetic activity was rapidly lost through adenylylation in response to ammonium ion. The enzyme could be prepared as a 'relaxed, divalent-cation-free form which was catalytically inactive. The 'taut', active form could be restored with 1-5 mM Mg2+, Mn2+, Ca2+ or CO2+ and taut-vs.-relaxed difference spectra unique to each divalent cation were generated. Mg2+ and CO2+ each supported biosynthetic catalysis, but with different substrate Km and Vmax values. L-Alanine, glycine and L-aspartate were the most potent of several inhibitors of the biosynthetic and the gamma-glutamyl transferase activities; only aspartate and AMP behaved differentially toward glutamine synthetase adenylylation state: the more highly adenylylated enzyme was more severely affected. Any two of alanine, glycine or AMP showed cumulative inhibition, while the inhibitory effects of groups of three effectors were not cumulative. The Co2+-supported biosynthetic activity of Al vinelandii glutamine synthetase was markedly less sensitive to inhibition my glycine and alanine and was stimulated up to 50% by 1-10 mM aspartate.
我们研究了棕色固氮菌谷氨酰胺合成酶(L-谷氨酸:氨连接酶(生成ADP),EC 6.3.1.2)活性和合成的调节。该酶的合成不受生长培养基中NH₄⁺和/或多种氨基酸的抑制;然而,响应铵离子,生物合成活性会通过腺苷酸化迅速丧失。该酶可以制备成“松弛的、无二价阳离子形式”,这种形式没有催化活性。“紧绷的”活性形式可以用1-5 mM的Mg²⁺、Mn²⁺、Ca²⁺或Co²⁺恢复,并且每种二价阳离子都产生了独特的紧绷态与松弛态差异光谱。Mg²⁺和Co²⁺都支持生物合成催化,但具有不同的底物Km和Vmax值。L-丙氨酸、甘氨酸和L-天冬氨酸是生物合成和γ-谷氨酰转移酶活性的几种抑制剂中最有效的;只有天冬氨酸和AMP对谷氨酰胺合成酶的腺苷酸化状态有不同影响:腺苷酸化程度越高的酶受到的影响越严重。丙氨酸、甘氨酸或AMP中的任意两种表现出累积抑制,而三种效应物组合的抑制作用没有累积性。Co²⁺支持的棕色固氮菌谷氨酰胺合成酶的生物合成活性对甘氨酸和丙氨酸的抑制明显不敏感,并且在1-10 mM天冬氨酸的作用下可被刺激高达50%。