Oppert B, Cunnick J M, Hurt D, Takemoto D J
Department of Biochemistry, Kansas State University, Manhattan 66506.
J Biol Chem. 1991 Sep 5;266(25):16607-13.
Retinal rod outer segment phosphodiesterase (PDE) consists of two similar catalytic subunits (alpha and beta) and two identical inhibitory subunits (gamma 2). A trypsin-activated soluble PDE exhibiting the ability to be reinhibited by PDE gamma was shown by peptide antisera to retain both N and C termini. Synthetic peptides corresponding to residues 16-30, 78-90, 389-403, and 535-563 of PDE alpha used in a PDE activity assay with trypsin-activated PDE partially prevented inhibition by exogenous PDE gamma; however, only competitions by peptides 16-30 and 78-90 (corresponding to PDE alpha 16-30 and 78-90) were concentration-dependent below 100 nmol of peptide. Binding studies using radio-immunoassays and PDE alpha peptides confirmed that peptides 16-30 and 78-90 (corresponding to PDE alpha 16-30 and 78-90, respectively) were able to bind PDE gamma. Additionally, peptides corresponding to the PDE alpha region 453-534 bound PDE gamma in the binding assay. This suggests that several regions on PDE alpha interact with the PDE gamma inhibitor. While some regions may be involved in binding to PDE gamma, other sites may be involved in PDE gamma inhibition of catalytic activity. Our results suggest that the major regions of PDE alpha that interact with PDE gamma reside within the N terminus (16-30 and 78-90), with weaker interaction regions within or near the hypothesized catalytic domain (453-563). Sequence analysis of three retinal phosphodiesterases (rod outer segment alpha, beta, and cone outer segment alpha') revealed the highest region of dissimilarity in the N and C termini.
视网膜视杆外段磷酸二酯酶(PDE)由两个相似的催化亚基(α和β)和两个相同的抑制亚基(γ2)组成。一种经胰蛋白酶激活的可溶性PDE表现出被PDEγ重新抑制的能力,肽抗血清显示其保留了N端和C端。在胰蛋白酶激活的PDE活性测定中使用的与PDEα的16 - 30、78 - 90、389 - 403和535 - 563位残基相对应的合成肽部分地阻止了外源性PDEγ的抑制;然而,只有16 - 30和78 - 90肽段(对应于PDEα 16 - 30和78 - 90)在低于100 nmol肽的情况下竞争是浓度依赖性的。使用放射免疫测定和PDEα肽的结合研究证实,16 - 30和78 - 90肽段(分别对应于PDEα 16 - 30和78 - 90)能够结合PDEγ。此外,在结合测定中,与PDEα区域453 - 534相对应的肽段结合了PDEγ。这表明PDEα上的几个区域与PDEγ抑制剂相互作用。虽然一些区域可能参与与PDEγ的结合,但其他位点可能参与PDEγ对催化活性的抑制。我们的结果表明,与PDEγ相互作用的PDEα的主要区域位于N端(16 - 30和78 - 90)内,在假定的催化结构域内或附近有较弱的相互作用区域(453 - 563)。三种视网膜磷酸二酯酶(视杆外段α、β和视锥外段α')的序列分析显示,N端和C端的差异最大。