Hammarström A, Soliman A, Nordlund S
Department of Biochemistry, Arrhenius Laboratories for Natural Sciences, University of Stockholm, Sweden.
Biochim Biophys Acta. 1991 Nov 15;1080(3):259-63. doi: 10.1016/0167-4838(91)90011-n.
Glutamine synthetase from Rhodospirillum rubrum can be isolated in two forms, with low and high activity, respectively, depending on the concentration of combined nitrogen in the medium before harvest. The two forms have been studied with respect to their dependence on Mn2+ and Mg2+ in both the transferase and the biosynthetic assay. There is no difference in pH optimum between the forms in the biosynthetic assay. In addition the pH-optima for the two cations studied are very close, 7.4 (Mg2+) and 7.2 (Mn2+). It also shows that the activity of the low-activity form is higher than that of the high-activity form in the Mn(2+)-dependent biosynthetic assay. The two forms of Rsp. rubrum glutamine synthetase have also been studied with respect to their sensitivity towards feed-back effectors. In the transferase assay both forms are inhibited to essentially the same degree by alanine, glycine, histidine, AMP, CTP and UTP, CTP being the most effective of the nucleotides and of the amino acids alanine causes the highest inhibition. In the biosynthetic assay these effectors show different degrees of inhibition on the two different forms; the high-activity form being the most sensitive. The results are discussed in relation to properties of glutamine synthetase from Escherichia coli and other phototropic bacteria in which regulation of glutamine synthetase is known to be due to adenylylation. It is also shown that the low-activity form of Rsp. rubrum glutamine synthetase can be activated in crude extracts in a reaction that is inhibited by glutamine.
深红红螺菌谷氨酰胺合成酶可以分离出两种形式,活性分别较低和较高,这取决于收获前培养基中结合态氮的浓度。针对这两种形式,研究了它们在转移酶和生物合成测定中对Mn2+和Mg2+的依赖性。在生物合成测定中,两种形式的最适pH没有差异。此外,所研究的两种阳离子的最适pH非常接近,分别为7.4(Mg2+)和7.2(Mn2+)。研究还表明,在依赖Mn(2+)的生物合成测定中,低活性形式的活性高于高活性形式。还研究了深红红螺菌谷氨酰胺合成酶的两种形式对反馈效应物的敏感性。在转移酶测定中,两种形式都受到丙氨酸、甘氨酸、组氨酸、AMP、CTP和UTP的基本相同程度的抑制,CTP是最有效的核苷酸,丙氨酸是最有效的氨基酸,抑制作用最强。在生物合成测定中,这些效应物对两种不同形式表现出不同程度的抑制;高活性形式最敏感。结合已知谷氨酰胺合成酶的调节是由于腺苷酸化的大肠杆菌和其他光合细菌的谷氨酰胺合成酶的特性对结果进行了讨论。研究还表明,深红红螺菌谷氨酰胺合成酶的低活性形式在粗提取物中可以被谷氨酰胺抑制的反应激活。