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Publication : Sip1 regulates the generation of the inner nuclear layer retinal cell lineages in mammals.

First Author  Menuchin-Lasowski Y Year  2016
Journal  Development Volume  143
Issue  15 Pages  2829-41
PubMed ID  27385012 Mgi Jnum  J:235721
Mgi Id  MGI:5800593 Doi  10.1242/dev.136101
Citation  Menuchin-Lasowski Y, et al. (2016) Sip1 regulates the generation of the inner nuclear layer retinal cell lineages in mammals. Development 143(15):2829-41
abstractText  The transcription factor Sip1 (Zeb2) plays multiple roles during CNS development from early acquisition of neural fate to cortical neurogenesis and gliogenesis. In humans, SIP1 (ZEB2) haploinsufficiency leads to Mowat-Wilson syndrome, a complex congenital anomaly including intellectual disability, epilepsy and Hirschsprung disease. Here we uncover the role of Sip1 in retinogenesis. Somatic deletion of Sip1 from mouse retinal progenitors primarily affects the generation of inner nuclear layer cell types, resulting in complete loss of horizontal cells and reduced numbers of amacrine and bipolar cells, while the number of Muller glia is increased. Molecular analysis places Sip1 downstream of the eye field transcription factor Pax6 and upstream of Ptf1a in the gene network required for generating the horizontal and amacrine lineages. Intriguingly, characterization of differentiation dynamics reveals that Sip1 has a role in promoting the timely differentiation of retinal interneurons, assuring generation of the proper number of the diverse neuronal and glial cell subtypes that constitute the functional retina in mammals.
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