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Clathrin Assembly Lymphoid Myeloid Leukemia (CALM) Protein: Localization in Endocytic-coated Pits Interactions with Clathrin and the Impact of Overexpression on Clathrin-mediated Traffic

机译:网格蛋白大会淋巴样髓性白血病(CALM)蛋白:内吞涂层坑网格蛋白的相互作用和过表达对网格蛋白介导的交通的影响中的本地化。

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摘要

The clathrin assembly lymphoid myeloid leukemia (CALM) gene encodes a putative homologue of the clathrin assembly synaptic protein AP180. Hence the biochemical properties, the subcellular localization, and the role in endocytosis of a CALM protein were studied. In vitro binding and coimmunoprecipitation demonstrated that the clathrin heavy chain is the major binding partner of CALM. The bulk of cellular CALM was associated with the membrane fractions of the cell and localized to clathrin-coated areas of the plasma membrane. In the membrane fraction, CALM was present at near stoichiometric amounts relative to clathrin. To perform structure–function analysis of CALM, we engineered chimeric fusion proteins of CALM and its fragments with the green fluorescent protein (GFP). GFP–CALM was targeted to the plasma membrane–coated pits and also found colocalized with clathrin in the Golgi area. High levels of expression of GFP–CALM or its fragments with clathrin-binding activity inhibited the endocytosis of transferrin and epidermal growth factor receptors and altered the steady-state distribution of the mannose-6-phosphate receptor in the cell. In addition, GFP–CALM overexpression caused the loss of clathrin accumulation in the trans-Golgi network area, whereas the localization of the clathrin adaptor protein complex 1 in the trans-Golgi network remained unaffected. The ability of the GFP-tagged fragments of CALM to affect clathrin-mediated processes correlated with the targeting of the fragments to clathrin-coated areas and their clathrin-binding capacities. Clathrin–CALM interaction seems to be regulated by multiple contact interfaces. The C-terminal part of CALM binds clathrin heavy chain, although the full-length protein exhibited maximal ability for interaction. Altogether, the data suggest that CALM is an important component of coated pit internalization machinery, possibly involved in the regulation of clathrin recruitment to the membrane and/or the formation of the coated pit.
机译:网格蛋白装配淋巴样髓性白血病(CALM)基因编码网格蛋白装配突触蛋白AP180的推定同源物。因此,对CALM蛋白的生化特性,亚细胞定位及其在胞吞作用中的作用进行了研究。体外结合和免疫共沉淀表明网格蛋白重链是CALM的主要结合伙伴。细胞CALM的大部分与细胞的膜部分相关联,并位于质膜的网格蛋白涂层区域。在膜部分中,相对于网格蛋白,CALM以接近化学计量的量存在。为了进行CALM的结构功能分析,我们设计了CALM的嵌合融合蛋白及其片段与绿色荧光蛋白(GFP)。 GFP–CALM靶向质膜包被的凹陷,并在高尔基地区与网格蛋白共定位。 GFP-CALM或其具有网格蛋白结合活性的片段的高水平表达抑制了转铁蛋白和表皮生长因子受体的内吞作用,并改变了甘露糖6磷酸受体在细胞中的稳态分布。另外,GFP-CALM的过表达引起了反式高尔基体网络区域中网格蛋白的积累损失,而反式高尔基体网络中网格蛋白衔接蛋白复合物1的定位仍然不受影响。带有GFP标签的CALM片段影响网格蛋白介导的过程的能力与将片段靶向网格蛋白包被的区域及其网格蛋白结合能力有关。网格蛋白-CALM相互作用似乎受多个接触界面的调节。尽管全长蛋白质表现出最大的相互作用能力,但CALM的C末端部分结合网格蛋白重链。总体而言,数据表明CALM是包膜坑内部化机制的重要组成部分,可能参与网格蛋白的募集和/或包膜坑形成的调节。

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