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Necessity and Sufficiency of Ldb1 in the Generation Differentiation and Maintenance of Non-photoreceptor Cell Types During Retinal Development

机译:Ldb1在视网膜发育过程中非感光细胞类型的产生分化和维持中的必要性和充分性

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摘要

During mammalian retinal development, the multipotent progenitors differentiate into all classes of retinal cells under the delicate control of transcriptional factors. The deficiency of a transcription cofactor, the LIM-domain binding protein Ldb1, has been shown to cause proliferation and developmental defects in multiple tissues including cardiovascular, hematopoietic, and nervous systems; however, it remains unclear whether and how it regulates retinal development. By expression profiling, RNA in situ hybridization and immunostaining, here we show that Ldb1 is expressed in the progenitors during early retinal development, but later its expression gradually shifts to non-photoreceptor cell types including bipolar, amacrine, horizontal, ganglion, and Müller glial cells. Retina-specific ablation of Ldb1 in mice resulted in microphthalmia, optic nerve hypoplasia, retinal thinning and detachment, and profound vision impairment as determined by electroretinography. In the mutant retina, there was precocious differentiation of amacrine and horizontal cells, indicating a requirement of Ldb1 in maintaining the retinal progenitor pool. Additionally, all non-photoreceptor cell types were greatly reduced which appeared to be caused by a generation defect and/or retinal degeneration via excessive cell apoptosis. Furthermore, we showed that misexpressed Ldb1 was sufficient to promote the generation of bipolar, amacrine, horizontal, ganglion, and Müller glial cells at the expense of photoreceptors. Together, these results demonstrate that Ldb1 is not only necessary but also sufficient for the development and/or maintenance of non-photoreceptor cell types, and implicate that the pleiotropic functions of Ldb1 during retinal development are context-dependent and determined by its interaction with diverse LIM-HD (LIM-homeodomain) and LMO (LIM domain-only) binding protein partners.
机译:在哺乳动物视网膜发育期间,多能祖细胞在转录因子的精细控制下分化为所有类型的视网膜细胞。转录辅助因子LIM结构域结合蛋白Ldb1的缺乏已被证明会在包括心血管,造血和神经系统在内的多种组织中引起增殖和发育缺陷。但是,目前尚不清楚是否以及如何调节视网膜的发育。通过表达谱分析,RNA原位杂交和免疫染色,这里我们显示Ldb1在早期视网膜发育过程中在祖细胞中表达,但后来其表达逐渐转移到非感光细胞类型,包括双极,无长突,水平,神经节和穆勒神经胶质细胞。 Ldb1在小鼠中的视网膜特异性消融可导致小眼症,视神经发育不全,视网膜变薄和脱离以及视网膜电图确定的严重视力障碍。在突变的视网膜中,先天性和水平细胞早熟分化,表明在维持视网膜祖细胞中需要Ldb1。另外,所有非感光细胞类型都大大减少了,这似乎是由于细胞凋亡过度引起的世代缺陷和/或视网膜变性引起的。此外,我们表明错表达的Ldb1足以促进双极,无长突,水平,神经节和Müller胶质细胞的生成,但以感光细胞为代价。在一起,这些结果表明,Ldb1不仅对于非感光细胞类型的发育和/或维持是必要的,而且也足够,并且暗示Ldb1在视网膜发育过程中的多效性功能取决于上下文,并取决于其与多种不同物质的相互作用。 LIM-HD(LIM-同源域)和LMO(仅LIM域)结合蛋白伴侣。

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