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A Highlights from MBoC Selection: Rab11-family interacting proteins define spatially and temporally distinct regions within the dynamic Rab11a-dependent recycling system

机译:MBoC选择的亮点:Rab11家族相互作用的蛋白质在依赖Rab11a的动态循环系统中定义了时空上不同的区域

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The Rab11-family interacting proteins (Rab11-FIPs) facilitate Rab11-dependent vesicle recycling. We hypothesized that Rab11-FIPs define discrete subdomains and carry out temporally distinct roles within the recycling system. We used live-cell deconvolution microscopy of HeLa cells expressing chimeric fluorescent Rab11-FIPs to examine Rab11-FIP localization, transferrin passage through Rab11-FIP–containing compartments, and overlap among Rab11-FIPs within the recycling system. FIP1A, FIP2, and FIP5 occupy widely distributed mobile tubules and vesicles, whereas FIP1B, FIP1C, and FIP3 localize to perinuclear tubules. Internalized transferrin entered Rab11-FIP–containing compartments within 5 min, reaching maximum colocalization with FIP1B and FIP2 early in the time course, whereas localization with FIP1A, FIP1C, FIP3, and FIP5 was delayed until 10 min or later. Whereas direct interactions with FIP1A were only observed for FIP1B and FIP1C, FIP1A also associated with membranes containing FIP3. Live-cell dual-expression studies of Rab11-FIPs revealed the tubular dynamics of Rab11-FIP–containing compartments and demonstrated a series of selective associations among Rab11-FIPs in real time. These findings suggest that Rab11-FIP1 proteins participate in spatially and temporally distinct steps of the recycling process along a complex and dynamic tubular network in which Rab11-FIPs occupy discrete domains.
机译:Rab11家庭相互作用蛋白(Rab11 FIPs)促进Rab11依赖的囊泡回收。我们假设Rab11-FIPs定义了离散的子域,并在回收系统中发挥了暂时不同的作用。我们使用表达嵌合荧光Rab11-FIPs的HeLa细胞的活细胞解卷积显微镜检查了Rab11-FIP的定位,转铁蛋白通过含Rab11-FIP的隔室以及回收系统中Rab11-FIP之间的重叠。 FIP1A,FIP2和FIP5占据了分布广泛的移动小管和囊泡,而FIP1B,FIP1C和FIP3则位于核周小管中。内在的转铁蛋白在5分钟内进入含有Rab11-FIP的区室,在时间过程中与FIP1B和FIP2达到最大共定位,而与FIP1A,FIP1C,FIP3和FIP5的定位被延迟到10分钟或更晚。尽管仅在FIP1B和FIP1C中观察到与FIP1A的直接相互作用,但FIP1A也与包含FIP3的膜相关。 Rab11-FIP的活细胞双重表达研究揭示了包含Rab11-FIP的小室的管状动力学,并实时显示了Rab11-FIP之间的一系列选择性关联。这些发现表明,Rab11-FIP1蛋白沿着复杂且动态的管状网络(其中Rab11-FIP占据离散域)参与回收过程的时空上不同的步骤。

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