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Birbeck granules are subdomains of endosomal recycling compartment in human epidermal Langerhans cells, which form where langerin accumulates

机译:Birbeck颗粒是人表皮朗格汉斯细胞中内体循环室的亚域,形成了Langerin积累的地方

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Birbeck granules are unusual rod-shaped structures specific to epidermal Langerhans cells, whose origin and function remain undetermined. We investigated the intracellular location and fate of Langerin, a protein implicated in Birbeck granule biogenesis, in human epidermal Langerhans cells. In the steady state, Langerin is predominantly found in the endosomal recycling compartment and in Birbeck granules. Langerin internalizes by classical receptor-mediated endocytosis and the first Birbeck granules accessible to endocytosed Langerin are those connected to recycling endosomes in the pericentriolar area, where Langerin accumulates. Drug-induced inhibition of endocytosis results in the appearance of abundant open-ended Birbeck granule-like structures appended to the plasma membrane, whereas inhibition of recycling induces Birbeck granules to merge with a tubular endosomal network. In mature Langerhans cells, Langerin traffic is abolished and the loss of internal Langerin is associated with a concomitant depletion of Birbeck granules. Our results demonstrate an exchange of Langerin between early endosomal compartments and the plasma membrane, with dynamic retention in the endosomal recycling compartment. They show that Birbeck granules are not endocytotic structures, rather they are subdomains of the endosomal recycling compartment that form where Langerin accumulates. Finally, our results implicate ADP-ribosylation factor proteins in Langerin trafficking and the exchange between Birbeck granules and other endosomal membranes. [References: 65]
机译:Birbeck颗粒是表皮朗格汉斯细胞特有的异常杆状结构,其起源和功能尚未确定。我们在人表皮朗格汉斯细胞中调查了兰格林的细胞内位置和命运,兰格林是一种与Birbeck颗粒生物发生有关的蛋白质。在稳定状态下,Langerin主要存在于内体循环室和Birbeck颗粒中。 Langerin通过经典的受体介导的内吞作用而被内在化,被内吞的Langerin接近的第一个Birbeck颗粒是那些与在Langerin聚集的中心小周区域中的回收内体有关的颗粒。药物诱导的内吞作用抑制作用导致质膜上出现大量开放式Birbeck颗粒状结构,而对回收的抑制作用则诱导Birbeck颗粒与管状内体网络融合。在成熟的Langerhans细胞中,Langerin的运输被消除,内部Langerin的丧失与Birbeck颗粒的伴随消耗有关。我们的结果表明,在早期的内体区室和质膜之间交换了Langerin,并在内体再循环室中动态保留。他们表明,Birbeck颗粒不是内吞结构,而是它们在形成内格伦的积累的内体再循环区的亚域。最后,我们的研究结果提示ADP-核糖基化因子蛋白参与了Langerin的运输以及Birbeck颗粒与其他内体膜之间的交换。 [参考:65]

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