Elshatory Yasser, Deng Min, Xie Xiaoling, Gan Lin
Center for Aging and Developmental Biology, University of Rochester, Rochester, NY 14642, USA.
J Comp Neurol. 2007 Jul 1;503(1):182-97. doi: 10.1002/cne.21390.
The mammalian retina is comprised of six major neuronal cell types and is subdivided into more morphological and physiological subtypes. The transcriptional machinery underlying these subtype fate choices is largely unknown. The LIM-homeodomain protein, Isl1, plays an essential role in central nervous system (CNS) differentiation but its relationship to retinal neurogenesis remains unknown. We report here its dynamic spatiotemporal expression in the mouse retina. Among bipolar interneurons, Isl1 expression commences at postnatal day (P)5 and is later restricted to ON-bipolar cells. The intensity of Isl1 expression is found to segregate the pool of ON-bipolar cells into rod and ON-cone bipolar cells with higher expression in rod bipolar cells. As bipolar cell development proceeds from P5-10 the colocalization of Isl1 and the pan-bipolar cell marker Chx10 reveals the organization of ON-center bipolar cell nuclei to the upper portion of the inner nuclear layer. Further, whereas Isl1 is predominantly a ganglion cell marker prior to embryonic day (E)15.5, at E15.5 and later its expression in nonganglion cells expands. We demonstrate that these Isl1-positive, nonganglion cells acquire the expression of amacrine cell markers embryonically, likely representing nascent cholinergic amacrine cells. Taken together, Isl1 is expressed during the maturation of and is later maintained in retinal ganglion cells and subtypes of amacrine and bipolar cells where it may function in the maintenance of these cells into adulthood.
哺乳动物的视网膜由六种主要的神经元细胞类型组成,并进一步细分为更多的形态学和生理学亚型。这些亚型命运选择背后的转录机制在很大程度上尚不清楚。LIM同源结构域蛋白Isl1在中枢神经系统(CNS)分化中起重要作用,但其与视网膜神经发生的关系仍不清楚。我们在此报告其在小鼠视网膜中的动态时空表达。在双极中间神经元中,Isl1的表达在出生后第5天(P5)开始,随后局限于ON双极细胞。发现Isl1的表达强度将ON双极细胞池分为视杆双极细胞和ON视锥双极细胞,在视杆双极细胞中表达较高。随着双极细胞从P5发育到P10,Isl1与泛双极细胞标记物Chx10的共定位揭示了ON中心双极细胞核在内核层上部的组织。此外,虽然Isl1在胚胎第15.5天(E15.5)之前主要是神经节细胞标记物,但在E15.5及以后,其在非神经节细胞中的表达扩大。我们证明,这些Isl1阳性的非神经节细胞在胚胎期获得无长突细胞标记物的表达,可能代表新生的胆碱能无长突细胞。综上所述,Isl1在视网膜神经节细胞以及无长突细胞和双极细胞亚型的成熟过程中表达,并在后期维持,它可能在这些细胞成年后的维持中发挥作用。