Laboratory of Molecular Morphogenesis, Institute of Animal Physiology and Genetics, Czech Academy of Sciences, Brno, Czech Republic.
https://ror.org/02j46qs45 Department of Experimental Biology, Faculty of Science, Masaryk University, Brno, Czech Republic.
Life Sci Alliance. 2023 Oct 20;6(12). doi: 10.26508/lsa.202302073. Print 2023 Dec.
Primary cilia are cellular surface projections enriched in receptors and signaling molecules, acting as signaling hubs that respond to stimuli. Malfunctions in primary cilia have been linked to human diseases, including retinopathies and ocular defects. Here, we focus on TMEM107, a protein localized to the transition zone of primary cilia. TMEM107 mutations were found in patients with Joubert and Meckel-Gruber syndromes. A mouse model lacking exhibited eye defects such as anophthalmia and microphthalmia, affecting retina differentiation. expression during prenatal mouse development correlated with phenotype occurrence, with enhanced expression in differentiating retina and optic stalk. TMEM107 deficiency in retinal organoids resulted in the loss of primary cilia, down-regulation of retina-specific genes, and cyst formation. Knocking out TMEM107 in human ARPE-19 cells prevented primary cilia formation and impaired response to agonist treatment because of ectopic activation of the SHH pathway. Our data suggest TMEM107 plays a crucial role in early vertebrate eye development and ciliogenesis in the differentiating retina.
原发性纤毛是富含受体和信号分子的细胞表面突起,作为信号枢纽,对刺激做出反应。原发性纤毛功能障碍与包括视网膜病变和眼部缺陷在内的人类疾病有关。在这里,我们重点关注 TMEM107,一种定位于原发性纤毛过渡区的蛋白质。在患有 Joubert 和 Meckel-Gruber 综合征的患者中发现了 TMEM107 突变。缺乏 的小鼠模型表现出眼球缺陷,如无眼和小眼,影响视网膜分化。在产前小鼠发育过程中, 的表达与表型发生相关,在分化的视网膜和视柄中表达增强。在视网膜类器官中敲除 TMEM107 会导致原发性纤毛丧失、视网膜特异性基因下调和囊泡形成。在人类 ARPE-19 细胞中敲除 TMEM107 会阻止原发性纤毛的形成,并由于 SHH 途径的异位激活而损害对激动剂治疗的反应。我们的数据表明,TMEM107 在早期脊椎动物眼睛发育和分化的视网膜中的纤毛发生中起着关键作用。