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Expression and function of the LIM-homeodomain transcription factor Islet-1 in the developing and mature vertebrate retina

机译:利用 - 成熟脊椎动物视网膜中Lim-Homeodomain转录因子Islet-1的表达和功能

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The LIM-homeodomain transcription factor Islet-1 (Isl1) has been widely used as a marker of different subtypes of neurons in the developing and mature retina of vertebrates. During retinal neurogenesis, early Isl1 expression is detected in the nuclei of neuroblasts that give rise to ganglion, amacrine, bipolar, and horizontal cells. In the mature retina, Isl1 expression is restricted to the nuclei of ganglion cells, cholinergic amacrine cells, ON-bipolar cells, and subpopulations of horizontal cells. Recent studies have explored the functional mechanisms of Isl1 during specification and differentiation of these retinal cell types. Thus, conditional inactivation of Isl1 in the developing mouse retina disrupts retinal function, and also results in optic nerve hypoplasia, marked reductions in mature ganglion, amacrine, and bipolar cells, and a substantial increase in horizontal cells. Furthermore, conditional knockout shows delayed ganglion cell axon growth, ganglion cell axon guidance error, and ganglion cell nerve fiber defasciculation. These data together suggest a possible role for Isl1 in the early differentiation and maintenance of different vertebrate retinal cell types. This review examines whether the expression pattern of Isl1 during vertebrate retinal development is conserved across vertebrate species, and discusses current understanding of the developmental functions of Isl1 in retinogenesis. (C) 2015 Elsevier Ltd. All rights reserved.
机译:Lim-Homeodomain转录因子Eslet-1(ISL1)已被广泛用作脊椎动物的显影和成熟视网膜中神经元的不同亚级的标记。在视网膜神经发生期间,在神经细胞的细胞李中检测到早期的ISL1表达,其产生神经节,胺碱,双相和水平细胞。在成熟视网膜中,ISL1表达仅限于神经节细胞,仲胆碱能氨基细胞,双极细胞和水平细胞的亚核的细胞核。最近的研究探讨了在这些视网膜细胞类型的规范和分化期间ISL1的功能机制。因此,在显影小鼠视网膜中的ISL1的条件失活破坏视网膜功能,并且还导致视神经发育不全,成熟神经节,胺碱和双极细胞的标记减少,水平细胞的显着增加。此外,条件敲除显示延迟神经节细胞轴突生长,神经节细胞轴突引导误差和神经节细胞神经纤维缺陷。这些数据在一起表明ISL1在不同脊椎动物视网膜细胞类型的早期分化和维持中的可能作用。本综述研究了脊椎动物视网膜显影过程中ISL1的表达模式是否在脊椎动物物种上保存,并探讨了对视网膜发生中的ISL1发育功能的了解。 (c)2015 Elsevier Ltd.保留所有权利。

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