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首页> 外文期刊>Human Molecular Genetics >Cone-rod homeobox CRX controls presynaptic active zone formation in photoreceptors of mammalian retina
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Cone-rod homeobox CRX controls presynaptic active zone formation in photoreceptors of mammalian retina

机译:Cone-Rod Homeobox CRX控制哺乳动物视网膜的感光体中的突触前有源区形成

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In the mammalian retina, rod and cone photoreceptors transmit the visual information to bipolar neurons through highly specialized ribbon synapses. We have limited understanding of regulatory pathways that guide morphogenesis and organization of photoreceptor presynaptic architecture in the developing retina. While neural retina leucine zipper (NRL) transcription factor determines rod cell fate and function, cone-rod homeobox (CRX) controls the expression of both rod- and cone-specific genes and is critical for terminal differentiation of photoreceptors. A comprehensive immunohistochemical evaluation of Crx(-/-) (null), Crx(RiP/+) and Crx(Rip/Rip) (models of dominant congenital blindness) mouse retinas revealed abnormal photoreceptor synapses, with atypical ribbon shape, number and length. Integrated analysis of retinal transcriptomes of Crx-mutants with CRX- and NRL-ChIP-Seq data identified a subset of differentially expressed CRX target genes that encode presynaptic proteins associated with the cytomatrix active zone (CAZ) and synaptic vesicles. Immunohistochemistry of Crx-mutant retina validated aberrant expression of REEP6, PSD95, MPP4, UNC119, UNC13, RGS7 and RGS11, with some reduction in Ribeye and no significant change in immunostaining of RIMS1, RIMS2, Bassoon and Pikachurin. Our studies demonstrate that CRX controls the establishment of CAZ and anchoring of ribbons, but not the formation of ribbon itself, in photoreceptor presynaptic terminals.
机译:在哺乳动物视网膜中,棒和锥形光感受器通过高度专业化的带突触将视觉信息传送到双极神经元。我们对调节途径的理解有限,该途径指导了显影视网膜中的体内发生和组织感光体突触型结构。虽然神经视网膜亮氨酸拉链(NRL)转录因子决定杆细胞命运和功能,但锥形杆Homeobox(CRX)控制了杆状和锥形基因的表达,对感光体的末端分化至关重要。 CRX( - / - )(零),CRX(RIP / +)和CRX(RIP / RIP的模型)综合免疫组化评价(rip / RIP)小鼠视网膜揭示了异常光感受器突触,具有非典型色带形状,数量和长度。用CRX和NRL-CHIP-SEQ数据综合分析CRX-突变体的视网膜转录om,鉴定了差异表达的CRX靶基因的子集,其编码与细胞瘤有源区(CAZ)和突触囊泡相关的突触前蛋白质。 CRX-突变体视网膜的免疫组化验证了REEP6,PSD95,MPP4,UNC119,UNC13,RGS7和RGS11的异常表达,ribeye的一些降低,RIMS1,RIMS2,Bassoon和Pikachurin的免疫染色没有显着变化。我们的研究表明,CRX控制CAZ和锚定的丝带,而不是色带本身的形成,在感光体突触前终端中。

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