Neuroscience Research Institute, University of California at Santa Barbara, Santa Barbara, CA, 93106-5060.
Department of Psychological and Brain Sciences, University of California at Santa Barbara, Santa Barbara, CA, 93106-5060.
Glia. 2018 Mar;66(3):623-636. doi: 10.1002/glia.23269. Epub 2017 Nov 27.
Sox2 is a transcriptional regulator that is highly expressed in retinal astrocytes, yet its function in these cells has not previously been examined. To understand its role, we conditionally deleted Sox2 from the population of astrocytes and examined the consequences on retinal development. We found that Sox2 deletion does not alter the migration of astrocytes, but it impairs their maturation, evidenced by the delayed upregulation of glial fibrillary acidic protein (GFAP) across the retina. The centro-peripheral gradient of angiogenesis is also delayed in Sox2-CKO retinas. In the mature retina, we observed lasting abnormalities in the astrocytic population evidenced by the sporadic loss of GFAP immunoreactivity in the peripheral retina as well as by the aberrant extension of processes into the inner retina. Blood vessels in the adult retina are also under-developed and show a decrease in the frequency of branch points and in total vessel length. The developmental relationship between maturing astrocytes and angiogenesis suggests a causal relationship between the astrocytic loss of Sox2 and the vascular architecture in maturity. We suggest that the delay in astrocytic maturation and vascular invasion may render the retina hypoxic, thereby causing the abnormalities we observe in adulthood. These studies uncover a novel role for Sox2 in the development of retinal astrocytes and indicate that its removal can lead to lasting changes to retinal homeostasis.
Sox2 是一种转录调节因子,在视网膜星形胶质细胞中高度表达,但它在这些细胞中的功能尚未被研究过。为了了解它的作用,我们在星形胶质细胞群体中条件性地删除了 Sox2,并观察了对视网膜发育的影响。我们发现 Sox2 的缺失不会改变星形胶质细胞的迁移,但会损害它们的成熟,这表现在视网膜上 GFAP(神经胶质纤维酸性蛋白)的上调延迟。血管生成的中心-周边梯度也在 Sox2-CKO 视网膜中延迟。在成熟的视网膜中,我们观察到星形胶质细胞群体的持续异常,表现为外周视网膜 GFAP 免疫反应性的零星丧失,以及过程异常延伸到内视网膜。成年视网膜中的血管也发育不良,表现为分支点频率降低和总血管长度减少。成熟星形胶质细胞和血管生成之间的发育关系表明 Sox2 缺失的星形胶质细胞与成熟时的血管结构之间存在因果关系。我们认为星形胶质细胞成熟和血管侵袭的延迟可能使视网膜缺氧,从而导致我们在成年期观察到的异常。这些研究揭示了 Sox2 在视网膜星形胶质细胞发育中的新作用,并表明其缺失可能导致视网膜内稳态的持久变化。