首页> 外文期刊>Applied and Environmental Microbiology >Acetyl Coenzyme A Acetyltransferase of Rhizobium sp. (Cicer) Strain CC 1192.
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Acetyl Coenzyme A Acetyltransferase of Rhizobium sp. (Cicer) Strain CC 1192.

机译:乙酰辅酶A根瘤菌属的乙酰转移酶。 (Cicer)应变CC 1192。

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To investigate why Rhizobium sp. (Cicer) strain CC 1192 cells accumulate poly-R-3-hydroxybutyrate in the free-living state but not as bacteroids in nodules on chickpea (Cicer arietinum L.) plants, we have examined the kinetic properties of acetyl coenzyme A (acetyl-CoA) acetyltransferase (also known as acetoacetyl-CoA thiolase and 3-ketothiolase [EC 2.3.1.9]) from both types of cells. The enzyme had a native molecular mass of 180 (plusmn) 4 kDa, and the subunit molecular mass was 44 (plusmn) 1 kDa. The seven amino acids from the N terminus were Lys-Ala-Ser-Ile-Val-Ile-Ala. Thiolysis and condensation activity of the enzyme from free-living CC 1192 cells were optimal at pHs 7.8 and 8.1, respectively. The relationship between substrate concentrations and initial velocity for the thiolysis reaction were hyperbolic and gave K(infm) values for acetoacetyl-CoA and CoA of 42 and 56 (mu)M, respectively. The maximum velocity in the condensation direction was approximately 10% of that of the thiolysis reaction. With highly purified preparations of the enzyme, a value of approximately 1 mM was determined for the apparent K(infm) for acetyl-CoA. However, with partially purified enzyme preparations or when N-ethylmaleimide was included in reaction mixtures the apparent K(infm) for acetyl-CoA was close to 0.3 mM. In the condensation direction, CoA was a potent linear competitive inhibitor with an inhibition constant of 11 (mu)M. The much higher affinity of the enzyme for the product CoA than the substrate acetyl-CoA could have significance in view of metabolic differences between bacteroid and free-living cells of CC 1192. We propose that in free-living CC 1192 cells, the acetyl-CoA/CoA ratio reaches a value that allows condensation activity of acetyl-CoA acetyltransferase, but that in CC 1192 bacteroids, the ratio is poised so that the formation of acetoacetyl-CoA is not favored.
机译:调查为什么根瘤菌。 (Cicer)菌株CC 1192细胞在自由生活状态下积累聚R-3-羟基丁酸酯,但在鹰嘴豆(Cicer arietinum L.)植物上的结节中不作为类细菌积累,我们研究了乙酰辅酶A(乙酰-两种类型的细胞中的CoA)乙酰基转移酶(也称为乙酰乙酰基-CoA硫解酶和3-酮硫解酶[EC 2.3.1.9])。该酶的天然分子量为180(百万)4 kDa,亚单位分子量为44(百万)1 kDa。来自N末端的七个氨基酸是Lys-Ala-Ser-Ile-Val-Ile-Ala。来自自由生活的CC 1192细胞的酶的硫解和缩合活性分别在pH 7.8和8.1时最佳。底物浓度与硫解反应的初始速度之间的关系是双曲线的,并且乙酰乙酰基-CoA和CoA的K(infm)值分别为42和56μM。缩合方向上的最大速度约为硫解反应速度的10%。使用高度纯化的酶制剂,可以确定乙酰辅酶A的表观K(infm)约为1 mM。但是,对于部分纯化的酶制剂或当反应混合物中包含N-乙基马来酰亚胺时,乙酰基CoA的表观K(infm)接近0.3 mM。在缩合方向上,CoA是一种有效的线性竞争性抑制剂,抑制常数为11μM。考虑到CC 1192的细菌和自由细胞之间的代谢差异,酶对产物CoA的亲和力比底物乙酰CoA高得多。我们建议在CC 1192的自由生活细胞中,乙酰基CoA / CoA比达到允许乙酰-CoA乙酰转移酶的缩合活性的值,但是在CC 1192类细菌中,该比保持平衡,因此不利于乙酰乙酰-CoA的形成。

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