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参与遗传性视锥细胞营养不良的GUCA1A基因突变会损害钙介导的鸟苷酸环化酶调节。

Mutations in the GUCA1A gene involved in hereditary cone dystrophies impair calcium-mediated regulation of guanylate cyclase.

作者信息

Kitiratschky Veronique B D, Behnen Petra, Kellner Ulrich, Heckenlively John R, Zrenner Eberhart, Jägle Herbert, Kohl Susanne, Wissinger Bernd, Koch Karl-Wilhelm

机构信息

Molecular Genetics Laboratory, Institute for Ophthalmic Research, Centre for Ophthalmology, University Tübingen, Tübingen, Germany.

出版信息

Hum Mutat. 2009 Aug;30(8):E782-96. doi: 10.1002/humu.21055.

Abstract

The GUCA1A gene encodes the guanylate cyclase activating protein 1 (GCAP1) of mammalian rod and cone photoreceptor cells, which is involved in the Ca2+-dependent negative feedback regulation of membrane bound guanylate cyclases in the retina. Mutations in the GUCA1A gene have been associated with different forms of cone dystrophies leading to impaired cone vision and retinal degeneration. Here we report the identification of three novel and one previously detected GUCA1A mutations: c.265G>A (p.Glu89Lys), c.300T>A (p.Asp100Glu), c.476G>T (p.Gly159Val) and c.451C>T (p.Leu151Phe). The clinical data of the patients carrying these mutations were compared with the functional consequences of the mutant GCAP1 forms. For this purpose we purified the heterologously expressed GCAP1 forms and investigated whether the mutations affected the Ca2+-triggered conformational changes and the apparent interaction affinity with the membrane bound guanylate cyclase. Furthermore, we analyzed Ca2+-dependent regulatory modes of wildtype and mutant GCAP1 forms. Although all novel mutants were able to act as a Ca2+-sensor protein, they differed in their Ca2+-dependent activation profiles leading to a persistent stimulation of guanylate cyclase activities at physiological intracellular Ca2+ concentration.

摘要

GUCA1A基因编码哺乳动物视杆和视锥光感受器细胞中的鸟苷酸环化酶激活蛋白1(GCAP1),它参与视网膜中膜结合鸟苷酸环化酶的Ca2+依赖性负反馈调节。GUCA1A基因的突变与不同形式的视锥营养不良有关,导致视锥视觉受损和视网膜变性。在此,我们报告鉴定出三个新的和一个先前检测到的GUCA1A突变:c.265G>A(p.Glu89Lys)、c.300T>A(p.Asp100Glu)、c.476G>T(p.Gly159Val)和c.451C>T(p.Leu151Phe)。将携带这些突变的患者的临床数据与突变型GCAP1形式的功能后果进行了比较。为此,我们纯化了异源表达的GCAP1形式,并研究这些突变是否影响Ca2+触发的构象变化以及与膜结合鸟苷酸环化酶的表观相互作用亲和力。此外,我们分析了野生型和突变型GCAP1形式的Ca2+依赖性调节模式。尽管所有新突变体都能够作为Ca2+传感器蛋白发挥作用,但它们的Ca2+依赖性激活谱不同,导致在生理细胞内Ca2+浓度下持续刺激鸟苷酸环化酶活性。

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