Romio Leila, Fry Andrew M, Winyard Paul J D, Malcolm Sue, Woolf Adrian S, Feather Sally A
Nephro-Urology Unit, Institute of Child Health, University College London, WC1N 1EH, UK.
J Am Soc Nephrol. 2004 Oct;15(10):2556-68. doi: 10.1097/01.ASN.0000140220.46477.5C.
OFD1 is the gene responsible for the oral-facial-digital syndrome type 1, a cause of inherited cystic renal disease. The protein contains an N-terminal LisH motif, considered important in microtubule dynamics, and several putative coiled-coil domains. This study used a combination of microscopic, biochemical, and overexpression approaches to demonstrate that OFD1 protein is a core component of the human centrosome throughout the cell cycle. Using a series of GFP-OFD1 deletion constructs, it was determined that the N-terminus containing the LisH domain is not required for centrosomal localization; however, coiled-coil domains are critical, with at least two being necessary for centrosomal targeting. Importantly, most reported OFD1 mutations are predicted to cause protein truncation with loss of coiled-coil domains, presumably leading to loss of centrosomal localization. Kidney development constitutes a classic model of mesenchymal-epithelial transformation. By immunoprobing human metanephroi and kidney epithelial lines, it was found that, during acquisition of epithelial polarity, OFD1 became localized to the apical zone of nephron precursor cells and then to basal bodies at the origin of primary cilia in fully differentiated epithelia. These striking patterns of OFD1 localization within cells place the protein at key sites, where it may play roles not only in microtubule organization (centrosomal function) but also in mechanosensation of urine flow (a primary ciliary function).
OFD1是导致遗传性囊性肾病的1型口面指综合征的致病基因。该蛋白质含有一个N端LisH基序,被认为在微管动力学中很重要,以及几个推定的卷曲螺旋结构域。本研究结合显微镜、生化和过表达方法,证明OFD1蛋白在整个细胞周期中都是人类中心体的核心组成部分。使用一系列GFP - OFD1缺失构建体,确定含有LisH结构域的N端对于中心体定位不是必需的;然而,卷曲螺旋结构域至关重要,至少两个对于中心体靶向是必需的。重要的是,大多数报道的OFD1突变预计会导致蛋白质截短并失去卷曲螺旋结构域,大概会导致中心体定位丧失。肾脏发育是间充质 - 上皮转化的经典模型。通过对人类后肾和肾上皮细胞系进行免疫检测,发现在上皮极性形成过程中,OFD1定位于肾单位前体细胞的顶端区域,然后定位于完全分化上皮细胞中初级纤毛起始处的基体。OFD1在细胞内这种显著的定位模式将该蛋白置于关键位点,在这些位点它可能不仅在微管组织(中心体功能)中起作用,而且在尿流的机械感受(初级纤毛功能)中起作用。