Department of Cellular and Molecular Physiology, Yale School of Medicine New Haven, Connecticut, United States of America.
PLoS One. 2011;6(5):e19694. doi: 10.1371/journal.pone.0019694. Epub 2011 May 13.
It was reported that some proteins known to cause renal cystic disease (NPHP6; BBS1, and BBS4) also localize to the olfactory epithelium (OE), and that mutations in these proteins can cause anosmia in addition to renal cystic disease. We demonstrate here that a number of other proteins associated with renal cystic diseases - polycystin 1 and 2 (PC1, PC2), and Meckel-Gruber syndrome 1 and 3 (MKS1, MKS3) - localize to the murine OE. PC1, PC2, MKS1 and MKS3 are all detected in the OE by RT-PCR. We find that MKS3 localizes specifically to dendritic knobs of olfactory sensory neurons (OSNs), while PC1 localizes to both dendritic knobs and cilia of mature OSNs. In mice carrying mutations in MKS1, the expression of the olfactory adenylate cyclase (AC3) is substantially reduced. Moreover, in rats with renal cystic disease caused by a mutation in MKS3, the laminar organization of the OE is perturbed and there is a reduced expression of components of the odor transduction cascade (G(olf), AC3) and α-acetylated tubulin. Furthermore, we show with electron microscopy that cilia in MKS3 mutant animals do not manifest the proper microtubule architecture. Both MKS1 and MKS3 mutant animals show no obvious alterations in odor receptor expression. These data show that multiple renal cystic proteins localize to the OE, where we speculate that they work together to regulate aspects of the development, maintenance or physiological activities of cilia.
据报道,一些已知可引起肾囊性疾病的蛋白质(NPHP6;BBS1 和 BBS4)也定位于嗅上皮(OE),并且这些蛋白质的突变除了引起肾囊性疾病外还可导致嗅觉丧失。我们在此证明,与肾囊性疾病相关的许多其他蛋白质 - 多囊蛋白 1 和 2(PC1、PC2)以及 Meckel-Gruber 综合征 1 和 3(MKS1、MKS3) - 也定位于鼠的 OE。通过 RT-PCR 可在 OE 中检测到 PC1、PC2、MKS1 和 MKS3。我们发现 MKS3 特异性定位于嗅觉感觉神经元(OSN)的树突棘,而 PC1 则定位于成熟 OSN 的树突棘和纤毛。在携带 MKS1 突变的小鼠中,嗅觉环化酶(AC3)的表达大大降低。此外,在 MKS3 突变导致的肾囊性疾病大鼠中,OE 的层状结构受到干扰,并且气味转导级联的成分(G(olf)、AC3)和α-乙酰化微管蛋白的表达减少。此外,我们通过电子显微镜显示,MKS3 突变动物的纤毛没有表现出适当的微管结构。MKS1 和 MKS3 突变动物在气味受体表达方面均无明显改变。这些数据表明,多种肾囊性蛋白质定位于 OE,我们推测它们共同作用以调节纤毛的发育、维持或生理活动的某些方面。