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嵌合型PDE6α'/PDE5环磷酸鸟苷磷酸二酯酶的探测结构域功能

Probing domain functions of chimeric PDE6alpha'/PDE5 cGMP-phosphodiesterase.

作者信息

Granovsky A E, Natochin M, McEntaffer R L, Haik T L, Francis S H, Corbin J D, Artemyev N O

机构信息

Department of Physiology and Biophysics, University of Iowa College of Medicine, Iowa City, Iowa 52242, USA.

出版信息

J Biol Chem. 1998 Sep 18;273(38):24485-90. doi: 10.1074/jbc.273.38.24485.

Abstract

Chimeric cGMP phosphodiesterases (PDEs) have been constructed using components of the cGMP-binding PDE (PDE5) and cone photoreceptor phosphodiesterase (PDE6alpha') in order to study structure and function of the photoreceptor enzyme. A fully functional chimeric PDE6alpha'/PDE5 enzyme containing the PDE6alpha' noncatalytic cGMP-binding sites, and the PDE5 catalytic domain has been efficiently expressed in the baculovirus/High Five cell system. The catalytic properties of this chimera were practically indistinguishable from those of PDE5, whereas the noncatalytic cGMP binding was similar to that of native purified PDE6alpha'. The inhibitory gamma subunit of PDE6 (Pgamma) enhanced the affinity of cGMP binding at noncatalytic sites of native PDE6alpha' by approximately 6-fold. The polycationic region of Pgamma, Pgamma-24-45, was mainly responsible for this effect, while the inhibitory domain of Pgamma, Pgamma-63-87, was ineffective. On the contrary, Pgamma failed to inhibit catalytic activity of the chimeric PDE6alpha'/PDE5 or to modulate its noncatalytic cGMP binding. Substitutions of Ala residues for the conserved Asn, Asn193 or Asn402, in the two N(K/R)XD-like motifs of the chimeric PDE noncatalytic cGMP-binding sites, each led to a loss of the noncatalytic cGMP binding. Our data suggest that both putative noncatalytic sites of PDE6alpha' are important for binding of cGMP, and that the two binding sites are coupled. Furthermore, mutation Asn402 --> Ala resulted in an approximately 10-fold increase of the Km value for cGMP, indicating that occupation of the noncatalytic cGMP- binding sites of PDE6alpha' may regulate catalytic properties of the enzyme.

摘要

为了研究光感受器酶的结构与功能,已利用cGMP结合磷酸二酯酶(PDE5)和视锥光感受器磷酸二酯酶(PDE6α')的组件构建了嵌合cGMP磷酸二酯酶(PDEs)。一种含有PDE6α'非催化性cGMP结合位点和PDE5催化结构域的全功能嵌合PDE6α'/PDE5酶已在杆状病毒/High Five细胞系统中高效表达。该嵌合体的催化特性与PDE5的催化特性几乎无法区分,而非催化性cGMP结合与天然纯化的PDE6α'相似。PDE6的抑制性γ亚基(Pγ)使天然PDE6α'非催化位点处cGMP结合的亲和力提高了约6倍。Pγ的聚阳离子区域Pγ-24-45对此效应起主要作用,而Pγ的抑制结构域Pγ-63-87则无效。相反,Pγ无法抑制嵌合PDE6α'/PDE5的催化活性,也无法调节其非催化性cGMP结合。在嵌合PDE非催化性cGMP结合位点的两个N(K/R)XD样基序中,将保守的Asn、Asn193或Asn402替换为Ala残基,均导致非催化性cGMP结合丧失。我们的数据表明,PDE6α'的两个假定非催化位点对于cGMP结合都很重要,且这两个结合位点相互关联。此外,Asn402突变为Ala导致cGMP的Km值增加了约10倍,表明占据PDE6α'的非催化性cGMP结合位点可能会调节该酶的催化特性。

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