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干扰素诱导的(2'-5')寡腺苷酸合成酶的69-kDa和100-kDa同工型表现出不同的催化参数。

69-kDa and 100-kDa isoforms of interferon-induced (2'-5')oligoadenylate synthetase exhibit differential catalytic parameters.

作者信息

Marié I, Blanco J, Rebouillat D, Hovanessian A G

机构信息

Unité de Virologie et Immunologie Cellulaire (ERS CNRS 572) Institut Pasteur, Paris, France.

出版信息

Eur J Biochem. 1997 Sep 1;248(2):558-66. doi: 10.1111/j.1432-1033.1997.t01-1-00558.x.

Abstract

The (2'-5')oligoadenylate synthetase represents a family of interferon-induced proteins which when activated by double-stranded (ds)RNA polymerizes ATP into 2'-5'-linked oligomers with the general formula pppA(2'p5'A)n, where n > 1, which for convenience are referred to as 2-5A. We studied here the influence of pH, dsRNA concentration and time on oligomeric composition of 2-5A synthesized by purified 69-kDa and 100-kDa isoforms of (2'-5')oligo(adenylate) synthetase. In optimal conditions for activity, the 69-kDa form synthesized higher oligomers of 2-5A molecules whereas the 100 kDa form synthesized preferentially dimeric molecules, which are known not to be functional for the activation of RNase L. This difference does not reflect a differential affinity of the enzymes for the preformed 2-5A dimer, which is found to be a very poor substrate for both enzymes. This latter strongly suggests that the mechanism of elongation is more likely processive. Moreover, we show that both isoforms have efficient nucleotidyl-transferase activity and provide evidence that, in optimized conditions, GTP can be used alone as substrate by these enzymes to generate pppG2'p5'G. Our results clearly demonstrate that the 69-kDa and 100-kDa forms of (2'-5')oligoadenylate synthetase manifest various differential catalytic activities, and favor the hypothesis that these enzymes might have other functions in the cell besides those in the 2-5A system.

摘要

(2'-5')寡腺苷酸合成酶是一类干扰素诱导蛋白,在双链(ds)RNA激活下,可将ATP聚合成通式为pppA(2'p5'A)n(n>1)的2'-5'连接的寡聚物,为方便起见,将其称为2-5A。我们在此研究了pH、dsRNA浓度和时间对由纯化的69 kDa和100 kDa(2'-5')寡(腺苷酸)合成酶同工型合成的2-5A寡聚体组成的影响。在最佳活性条件下,69 kDa形式合成更高的2-5A分子寡聚物,而100 kDa形式优先合成二聚体分子,已知二聚体分子对核糖核酸酶L的激活无功能。这种差异并不反映酶对预先形成的2-5A二聚体的不同亲和力,因为发现二聚体对两种酶来说都是非常差的底物。这强烈表明延伸机制更可能是持续性的。此外,我们表明两种同工型都具有高效的核苷酸转移酶活性,并提供证据表明,在优化条件下,这些酶可单独使用GTP作为底物生成pppG2'p5'G。我们的结果清楚地表明,69 kDa和100 kDa形式的(2'-5')寡腺苷酸合成酶表现出各种不同的催化活性,并支持这样一种假设,即这些酶在细胞中除了在2-5A系统中的功能外可能还有其他功能。

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