Shabb J B, Poteet C E, Kapphahn M A, Muhonen W M, Baker N E, Corbin J D
Department of Biochemistry and Molecular Biology, University of North Dakota School of Medicine, Grand Forks 58202-9037, USA.
Protein Sci. 1995 Oct;4(10):2100-6. doi: 10.1002/pro.5560041015.
A 14.4-kDa cAMP-binding fragment was generated during bacterial expression and purification of recombinant bovine cAMP-dependent protein kinase type I alpha regulatory subunit (RI alpha). The full-length RI alpha from which the fragment was derived contained a point mutation allowing its B domain to bind both cAMP and cGMP with high affinity while leaving its A domain highly cAMP selective. The NH2 terminus of the fragment was Ser-252, indicating that it encompassed the entire predicted B domain. Although the [3H]cAMP and [3H]cGMP exchange rates of the isolated B domain were increased relative to the B domain in intact RI alpha, the [3H]cAMP exchange rate was comparable to that of the B domain of full-length RI alpha containing an unoccupied A domain. A plasmid encoding only the isolated B domain was overexpressed in Escherichia coli, and a monomeric form of the B domain was purified that had identical properties to the proteolytically generated fragment, indicating that all of the elements for the high-affinity cAMP-binding B domain are contained within the 128 amino acid carboxyl terminus of the R subunit. Prolonged induction of the B domain in E. coli or storage of the purified protein resulted in the formation of a dimer that could be reverted to the monomer by incubation in 2-mercaptoethanol. Dimerization caused an approximate fivefold increase in the rate of cyclic nucleotide exchange relative to the monomer. The results show that an isolated cAMP-binding domain can function independently of any other domain structures of the R subunit.
在重组牛I型α调节亚基(RIα)的细菌表达和纯化过程中产生了一个14.4 kDa的cAMP结合片段。该片段所源自的全长RIα含有一个点突变,使其B结构域能够以高亲和力结合cAMP和cGMP,而其A结构域对cAMP具有高度选择性。该片段的NH2末端为Ser-252,表明它包含了整个预测的B结构域。尽管分离出的B结构域的[3H]cAMP和[3H]cGMP交换率相对于完整RIα中的B结构域有所增加,但[3H]cAMP交换率与含有未占据A结构域的全长RIα的B结构域相当。仅编码分离出的B结构域的质粒在大肠杆菌中过表达,并纯化出一种单体形式的B结构域,其性质与蛋白水解产生的片段相同,这表明高亲和力cAMP结合B结构域的所有元件都包含在R亚基的128个氨基酸羧基末端内。在大肠杆菌中长时间诱导B结构域或储存纯化的蛋白会导致形成二聚体,通过在2-巯基乙醇中孵育可将其还原为单体。二聚化导致环核苷酸交换速率相对于单体增加约五倍。结果表明,分离出的cAMP结合结构域可以独立于R亚基的任何其他结构域发挥作用。