首页> 外文期刊>Journal of cellular biochemistry. >ADAM10 mediates N-cadherin ectodomain shedding during retinal ganglion cell differentiation in primary cultured retinal cells from the developing chick retina
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ADAM10 mediates N-cadherin ectodomain shedding during retinal ganglion cell differentiation in primary cultured retinal cells from the developing chick retina

机译:ADAM10介导来自发育中的雏鸡视网膜的原代培养视网膜细胞在视网膜神经节细胞分化过程中N-钙黏着蛋白胞外域脱落

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Here, we examined the role of ADAM10 during retinal cell differentiation in retinal sections and in vitro cultures of developing chick retinal cells from embryonic day 6 (ED6). Immunohistochemistry showed that ADAM10 is abundantly expressed in the inner zone of neuroblastic layer at ED5, and it becomes more highly expressed in the ganglion cell layer at ED7 and ED9. Western blotting confirmed that ADAM10 was expressed as an inactive pro-form that was processed to a shorter, active form in control cultured cells, but in cultures treated with an ADAM10 inhibitor (GI254023X) and ADAM10-specific siRNA, the level of mature ADAM10 decreased. Phase-contrast microscopy showed that long neurite extensions were present in untreated cultures 24 h after plating, whereas cultures treated with GI254023X showed significant decreases in neurite extension. Immunofluorescence staining revealed that there were far fewer differentiated ganglion cells in ADAM10 siRNA and GI254023X-treated cultures compared to controls, whereas the photoreceptor cells were unaltered. The Pax6 protein was more strongly detected in the differentiated ganglion cells of control cultures compared to ADAM10 siRNA and GI254023X-treated cultures. N-cadherin ectodomain shedding was apparent in control cultures after 24 h, when ganglion cell differentiation was observed, but ADAM10 siRNA and GI254023X treatment inhibited these processes. In contrast, N-cadherin staining was strongly detected in photoreceptor cells regardless of ADAM10 siRNA and GI254023X treatment. Taken together, these data indicate that the inhibition of ADAM10 can inhibit Pax6 expression and N-cadherin ectodomain shedding in retinal cells, possibly affecting neurite outgrowth and ganglion cell differentiation. J. Cell. Biochem. 114: 942-954, 2013. ? 2013 Wiley Periodicals, Inc.
机译:在这里,我们检查了ADAM10在视网膜切片中的视网膜细胞分化过程中的作用以及从胚胎第6天(ED6)开始发育的雏鸡视网膜细胞的体外培养。免疫组织化学显示,ADAM10在ED5的成神经细胞层的内部区域大量表达,并在ED7和ED9的神经节细胞层更高表达。 Western印迹证实,ADAM10表达为无活性的前体形式,在对照培养的细胞中被加工成较短的活性形式,但是在用ADAM10抑制剂(GI254023X)和ADAM10特异性siRNA处理的培养物中,成熟ADAM10的水平降低了。相差显微镜显示,接种后24 h,未处理的培养物中存在长的神经突延伸,而用GI254023X处理的培养物显示出神经突延伸显着减少。免疫荧光染色显示,与对照相比,ADAM10 siRNA和GI254023X处理的培养物中分化的神经节细胞少得多,而感光细胞未改变。与ADAM10 siRNA和GI254023X处理的培养物相比,在对照培养物的分化神经节细胞中更强烈地检测到Pax6蛋白。在观察到神经节细胞分化后24小时,N-钙粘蛋白胞外域脱落在对照培养物中是明显的,但是ADAM10 siRNA和GI254023X处理抑制了这些过程。相反,无论ADAM10 siRNA和GI254023X处理如何,在感光细胞中都强烈检测到N-钙黏着蛋白染色。综上所述,这些数据表明对ADAM10的抑制作用可以抑制视网膜细胞中Pax6的表达和N-钙粘蛋白胞外域的脱落,可能影响神经突的生长和神经节细胞的分化。 J.细胞。生化。 114:942-954,2013年。 2013 Wiley期刊公司

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