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Tyro3 Modulates Mertk-Associated Retinal Degeneration

机译:Tyro3调节与Mertk相关的视网膜变性

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摘要

Inherited photoreceptor degenerations (IPDs) are the most genetically heterogeneous of Mendelian diseases. Many IPDs exhibit substantial phenotypic variability, but the basis is usually unknown. Mutations in MERTK cause recessive IPD phenotypes associated with the RP38 locus. We have identified a murine genetic modifier of Mertk-associated photoreceptor degeneration, the C57BL/6 (B6) allele of which acts as a suppressor. Photoreceptors degenerate rapidly in Mertk-deficient animals homozygous for the 129P2/Ola (129) modifier allele, whereas animals heterozygous for B6 and 129 modifier alleles exhibit an unusual intermixing of degenerating and preserved retinal regions, with females more severely affected than males. Mertk-deficient mice homozygous for the B6 modifier allele display degeneration only in the far periphery, even at 8 months of age, and have improved retinal function compared to animals homozygous for the 129 allele. We genetically mapped the modifier to an approximately 2-megabase critical interval that includes Tyro3, a paralog of Mertk. Tyro3 expression in the outer retina varies with modifier genotype in a manner characteristic of a cis-acting expression quantitative trait locus (eQTL), with the B6 allele conferring an approximately three-fold higher expression level. Loss of Tyro3 function accelerates the pace of photoreceptor degeneration in Mertk knockout mice, and TYRO3 protein is more abundant in the retinal pigment epithelium (RPE) adjacent to preserved central retinal regions of Mertk knockout mice homozygous for the B6 modifier allele. Endogenous human TYRO3 protein co-localizes with nascent photoreceptor outer segment (POS) phagosomes in a primary RPE cell culture assay, and expression of murine Tyro3 in cultured cells stimulates phagocytic ingestion of POS. Our findings demonstrate that Tyro3 gene dosage modulates Mertk-associated retinal degeneration, provide strong evidence for a direct role for TYRO3 in RPE phagocytosis, and suggest that an eQTL can modify a recessive IPD.
机译:遗传性光感受器变性(IPD)是孟德尔疾病的遗传上最异质的。许多IPD表现出明显的表型变异性,但通常是未知的。 MERTK中的突变导致与RP38基因座相关的隐性IPD表型。我们已经确定了与Mertk相关的光感受器变性的鼠类遗传修饰剂,其C57BL / 6(B6)等位基因可作为抑制剂。在129P2 / Ola(129)修饰等位基因纯合的Mertk缺陷动物中,感光细胞迅速退化,而B6和129修饰等位基因杂合的动物表现出异常的变性和保留的视网膜区域混合,雌性比雄性受到的影响更大。与129个等位基因纯合子相比,B6修饰等位基因纯合子的Mertk缺陷小鼠仅在远缘显示退化,即使在8个月大时,也具有改善的视网膜功能。我们通过遗传将修饰子映射到大约2兆碱基的关键区间,其中包括Tyro3(Mertk的旁系同源物)。 Tyro3在外部视网膜中的表达随修饰基因型的不同而变化,以顺式作用表达数量性状基因座(eQTL)为特征,而B6等位基因的表达水平大约高三倍。 Tyro3功能的丧失加速了Mertk基因敲除小鼠的光感受器变性的速度,并且在与B6修饰等位基因纯合的Mertk基因敲除小鼠的保留中央视网膜区域相邻的视网膜色素上皮(RPE)中,TYRO3蛋白含量更高。内源性人类TYRO3蛋白在初次RPE细胞培养测定中与新生的感光外段(POS)吞噬体共定位,并且鼠Tyro3在培养细胞中的表达刺激吞噬吞噬POS的摄取。我们的研究结果表明,Tyro3基因剂量可调节与Mertk相关的视网膜变性,为TYRO3在RPE吞噬作用中发挥直接作用提供有力证据,并表明eQTL可以修饰隐性IPD。

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