Johnson J L, Toft D O
Department of Biochemistry and Molecular Biology, Mayo Graduate School, Rochester, Minnesota 55905.
J Biol Chem. 1994 Oct 7;269(40):24989-93.
In the absence of hormone, the avian progesterone receptor exists in a large multiprotein complex that is inactive but able to bind and respond to progestins. This inactive complex can be reconstituted in vitro by incubation of receptor monomer in rabbit reticulocyte lysate in the presence of ATP and magnesium. This results in receptor binding to the two heat shock proteins, hsp90 and hsp70, the FK506 binding-proteins, FKBP54 and FKBP52, the cyclosporin A-binding protein, cyclophilin-40, and the recently characterized protein p23. Immune isolation of p23 from rabbit reticulocyte lysate in the absence of receptor reveals an ATP-dependent complex containing the major proteins associated with steroid receptors. Depletion of p23 from lysate prevents the assembly of progesterone receptor complexes, and the addition of purified p23 restores this activity, indicating that the p23 protein complex is an essential precursor to the formation of progesterone receptor complexes.
在缺乏激素的情况下,禽类孕酮受体存在于一个大型多蛋白复合物中,该复合物无活性,但能够结合孕激素并对其作出反应。这种无活性复合物可通过在ATP和镁存在的情况下,将受体单体在兔网织红细胞裂解物中孵育来体外重构。这导致受体与两种热休克蛋白hsp90和hsp70、FK506结合蛋白FKBP54和FKBP52、环孢菌素A结合蛋白亲环蛋白40以及最近鉴定的蛋白p23结合。在没有受体的情况下,从兔网织红细胞裂解物中免疫分离p23,揭示了一个依赖ATP的复合物,其中包含与类固醇受体相关的主要蛋白质。从裂解物中去除p23可阻止孕酮受体复合物的组装,而添加纯化的p23可恢复此活性,表明p23蛋白复合物是孕酮受体复合物形成的必需前体。