首页> 美国卫生研究院文献>Frontiers in Molecular Neuroscience >Cone Phosphodiesterase-6γ’ Subunit Augments Cone PDE6 Holoenzyme Assembly and Stability in a Mouse Model Lacking Both Rod and Cone PDE6 Catalytic Subunits
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Cone Phosphodiesterase-6γ’ Subunit Augments Cone PDE6 Holoenzyme Assembly and Stability in a Mouse Model Lacking Both Rod and Cone PDE6 Catalytic Subunits

机译:缺乏杆和锥体PDE6催化亚基的小鼠模型中的锥体磷酸二酯酶-6γ亚基增强了锥体PDE6完整的酶组装和稳定性。

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摘要

Rod and cone phosphodiesterase 6 (PDE6) are key effector enzymes of the vertebrate phototransduction pathway. Rod PDE6 consists of two catalytic subunits PDE6α and PDE6β and two identical inhibitory PDE6γ subunits, while cone PDE6 is composed of two identical PDE6α’ catalytic subunits and two identical cone-specific PDE6γ’ inhibitory subunits. Despite their prominent function in regulating cGMP levels and therefore rod and cone light response properties, it is not known how each subunit contributes to the functional differences between rods and cones. In this study, we generated an rd10/cpfl1 mouse model lacking rod PDE6β and cone PDE6α’ subunits. Both rod and cone photoreceptor cells are degenerated with age and all PDE6 subunits degrade in rd10/cpfl1 mice. We expressed cone PDE6α’ in both rods and cones of rd10/cpfl1 mice by adeno-associated virus (AAV)-mediated delivery driven by the ubiquitous, constitutive small chicken β-actin promoter. We show that expression of PDE6α’ rescues rod function in rd10/cpfl1 mice, and the restoration of rod light sensitivity is attained through restoration of endogenous rod PDE6γ and formation of a functional PDE6α’γ complex. However, improved photopic cone responses were achieved only after supplementation of both cone PDE6α’ and PDE6γ’ subunits but not by PDE6α’ treatment alone. We observed a two fold increase of PDE6α’ levels in the eyes injected with both PDE6α’ plus PDE6γ’ relative to eyes receiving PDE6α’ alone. Despite the presence of both PDE6γ’ and PDE6γ, the majority of PDE6α’ formed functional complexes with PDE6γ’, suggesting that PDE6α’ has a higher association affinity for PDE6γ’ than for PDE6γ. These results suggest that the presence of PDE6γ’ augments cone PDE6 assembly and enhances its stability. Our finding has important implication for gene therapy of PDE6α’-associated achromatopsia.
机译:杆和锥磷酸二酯酶6(PDE6)是脊椎动物光转导途径的关键效应酶。杆状PDE6由两个催化亚基PDE6α和PDE6β以及两个相同的抑制性PDE6γ亚基组成,而视锥PDE6由两个相同的PDE6α′催化亚基和两个相同的视锥细胞特异性PDE6γ′抑制性亚基组成。尽管它们在调节cGMP水平以及因此对杆和锥光响应特性方面起着突出的作用,但尚不清楚每个亚基如何促进杆和锥之间的功能差异。在这项研究中,我们生成了rd10 / cpfl1小鼠模型,其中缺少杆PDE6β和锥状PDE6α'亚基。视杆细胞和视锥细胞均随着年龄而退化,并且所有PDE6亚基在rd10 / cpfl1小鼠中均降解。我们通过由无处不在的组成型小鸡β-肌动蛋白启动子驱动的腺相关病毒(AAV)介导的传递,在rd10 / cpfl1小鼠的视杆和视锥中表达视锥PDE6α'。我们显示PDE6α'的表达在rd10 / cpfl1小鼠中拯救了杆的功能,并且杆的光敏性的恢复是通过内源杆PDE6γ的还原和功能性PDE6α'γ复合物的形成而实现的。然而,仅在同时补充视锥细胞PDE6α'和PDE6γ'亚基后,才能实现改善的视锥反应,但仅通过PDE6α'治疗不能达到。与仅接受PDE6α'的眼睛相比,我们观察到注射PDE6α'和PDE6γ'的眼睛的PDE6α'水平增加了两倍。尽管同时存在PDE6γ′和PDE6γ,但大多数PDE6α′仍与PDE6γ′形成功能复合物,这表明PDE6α′对PDE6γ′的结合亲和力高于PDE6γ。这些结果表明,PDE6γ’的存在增强了锥状PDE6的组装并增强了其稳定性。我们的发现对PDE6α'相关性色盲的基因治疗具有重要意义。

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