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Distinct functions for IFT140 and IFT20 in opsin transport

机译:在opsin传输中IFT140和IFT20的功能不同

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摘要

In the vertebrate retina, light is detected by the outer segments of photoreceptor rods and cones, which are highly modified cilia. Like other cilia, outer segments have no protein synthetic capacity and depend on proteins made in the cell body for their formation and maintenance. The mechanism of transport into the outer segment is not fully understood but intraflagellar transport (IFT) is thought to be a major mechanism for moving protein from the cell body into the cilium. In the case of photoreceptor cells, the high density of receptors and the disk turnover that occurs daily necessitates much higher rates of transport than would be required in other cilia. In this work, we show that the IFT complex A protein IFT140 is required for development and maintenance of outer segments. In earlier work we found that acute deletion of Ift20 caused opsin to accumulate at the Golgi complex. In this work, we find that acute deletion of Ift140 does not cause opsin to accumulate at the Golgi complex but rather it accumulates in the plasma membrane of the inner segments. This work is a strong support of a model of opsin transport where IFT20 is involved in the movement from the Golgi complex to the base of the cilium. Then, once at the base, the opsin is carried through the connecting cilium by an IFT complex that includes IFT140. (c) 2014 Wiley Periodicals, Inc.
机译:在脊椎动物的视网膜中,光是由高度修饰的纤毛的感光棒和视锥细胞的外部部分检测到的。像其他纤毛一样,外部片段没有蛋白质合成能力,并且依赖于细胞体中形成和维持的蛋白质。转运到外段的机制尚不完全清楚,但鞭毛内转运(IFT)被认为是将蛋白质从细胞体转移到纤毛的主要机制。在感光细胞的情况下,每天发生的高密度受体和圆盘周转需要比其他纤毛更高的运输速率。在这项工作中,我们表明IFT复合物A蛋白IFT140是开发和维护外部片段所必需的。在较早的工作中,我们发现Ift20的急性缺失导致视蛋白在高尔基体中积累。在这项工作中,我们发现Ift140的急性缺失不会导致视蛋白在高尔基体复合物上积累,而是在内部节段的质膜中积累。这项工作为视蛋白运输模型提供了有力的支持,其中IFT20参与了从高尔基体到纤毛基部的运动。然后,一旦到达基部,视蛋白就由包含IFT140的IFT复合体携带通过连接纤毛。 (c)2014年威利期刊有限公司

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