Bosch Grau Montserrat, Masson Christel, Gadadhar Sudarshan, Rocha Cecilia, Tort Olivia, Marques Sousa Patricia, Vacher Sophie, Bieche Ivan, Janke Carsten
Institut Curie, PSL Research University, CNRS UMR3348, Orsay F-91405, France.
Université Paris Sud, Université Paris-Saclay, CNRS UMR3348, Orsay F-91405, France.
J Cell Sci. 2017 Mar 1;130(5):938-949. doi: 10.1242/jcs.199091. Epub 2017 Jan 19.
Tubulin is subject to a wide variety of posttranslational modifications, which, as part of the tubulin code, are involved in the regulation of microtubule functions. Glycylation has so far predominantly been found in motile cilia and flagella, and absence of this modification leads to ciliary disassembly. Here, we demonstrate that the correct functioning of connecting cilia of photoreceptors, which are non-motile sensory cilia, is also dependent on glycylation. In contrast to many other tissues, only one glycylase, TTLL3, is expressed in retina. mice lack glycylation in photoreceptors, which results in shortening of connecting cilia and slow retinal degeneration. Moreover, absence of glycylation results in increased levels of tubulin glutamylation in photoreceptors, and inversely, the hyperglutamylation observed in the Purkinje cell degeneration () mouse abolishes glycylation. This suggests that both posttranslational modifications compete for modification sites, and that unbalancing the glutamylation-glycylation equilibrium on axonemes of connecting cilia, regardless of the enzymatic mechanism, invariably leads to retinal degeneration.
微管蛋白会经历多种翻译后修饰,作为微管蛋白编码的一部分,这些修饰参与微管功能的调节。到目前为止,糖基化主要在运动性纤毛和鞭毛中发现,这种修饰的缺失会导致纤毛解体。在这里,我们证明了作为非运动性感觉纤毛的光感受器连接纤毛的正常功能也依赖于糖基化。与许多其他组织不同,视网膜中仅表达一种糖基化酶TTLL3。小鼠光感受器中缺乏糖基化,这导致连接纤毛缩短和视网膜缓慢退化。此外,糖基化的缺失导致光感受器中微管蛋白谷氨酰胺化水平升高,相反,在浦肯野细胞变性()小鼠中观察到的高谷氨酰胺化消除了糖基化。这表明这两种翻译后修饰竞争修饰位点,并且无论酶促机制如何,连接纤毛轴丝上谷氨酰胺化 - 糖基化平衡的失衡都会导致视网膜退化。