Ramamurthy Vasanth, Jolicoeur Christine, Koutroumbas Demetra, Mühlhans Johanna, Le Yun-Zheng, Hauswirth William W, Giessl Andreas, Cayouette Michel
Institut de recherches cliniques de Montreal, Montreal, Quebec H2W 1R7, Canada, Division of Experimental Medicine and.
Institut de recherches cliniques de Montreal, Montreal, Quebec H2W 1R7, Canada.
J Neurosci. 2014 Oct 15;34(42):13976-87. doi: 10.1523/JNEUROSCI.1938-14.2014.
The development and maintenance of protein compartmentalization is essential for neuronal function. A striking example is observed in light-sensing photoreceptors, in which the apical sensory cilium is subdivided into an inner and outer segment, each containing specific proteins essential for vision. It remains unclear, however, how such polarized protein localization is regulated. We report here that the endocytic adaptor protein Numb localizes to the inner, but not the outer segment of mouse photoreceptor cilia. Rod photoreceptor-specific inactivation of numb in vivo leads to progressive photoreceptor degeneration, indicating an essential role for Numb in photoreceptor cell biology. Interestingly, we report that loss of Numb in photoreceptors does not affect the localization of outer segment disk membrane proteins, such as rhodopsin, Peripherin-rds, Rom-1, and Abca4, but significantly disrupts the localization of the rod cyclic nucleotide-gated (Cng) channels, which accumulates on the inner segment plasma membrane in addition to its normal localization to the outer segments. Mechanistically, we show that Numb interacts with both subunits of the Cng channel and promotes the trafficking of Cnga1 to the recycling endosome. These results suggest a model in which Numb prevents targeting of Cng channels to the inner segment, by promoting their trafficking through the recycling endosome, where they can be sorted for specific delivery to the outer segment. This study uncovers a novel mechanism regulating polarized protein delivery in light-sensing cilia, raising the possibility that Numb plays a part in the regulation of protein trafficking in other types of cilia.
蛋白质区室化的发展和维持对神经元功能至关重要。在光感受光感受器中可观察到一个显著例子,其顶端感觉纤毛被细分为内段和外段,每段都含有视觉所必需的特定蛋白质。然而,尚不清楚这种极化的蛋白质定位是如何被调控的。我们在此报告,内吞衔接蛋白Numb定位于小鼠光感受器纤毛的内段,而非外段。在体内对视杆光感受器特异性敲除numb会导致进行性光感受器退化,表明Numb在光感受器细胞生物学中起关键作用。有趣的是,我们报告光感受器中Numb的缺失并不影响外段盘膜蛋白(如视紫红质、外周蛋白-rds、Rom-1和Abca4)的定位,但会显著破坏视杆环核苷酸门控(Cng)通道的定位,该通道除了正常定位于外段外,还在内段质膜上积累。从机制上讲,我们表明Numb与Cng通道的两个亚基相互作用,并促进Cnga1向内体循环的运输。这些结果提示了一个模型,即Numb通过促进Cng通道通过内体循环运输来防止其靶向内段,在内体循环中它们可以被分选以特异性递送至外段。这项研究揭示了一种调节光感受纤毛中极化蛋白质递送的新机制,增加了Numb在其他类型纤毛的蛋白质运输调控中发挥作用的可能性。