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The CEACAM1 transmembrane domain, but not the cytoplasmic domain, directs internalization of human pathogens via membrane microdomains

机译:CEACAM1跨膜结构域而非细胞质结构域通过膜微结构域指导人类病原体的内在化

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Several bacterial pathogens exploit carcinoembryonic antigen-related cell adhesion molecules (CEACAMs) to promote attachment and uptake into eukaryotic host cells. The widely expressed isoform CEACAM1 is involved in cell-cell adhesion, regulation of cell proliferation, insulin homeostasis, and neo-angiogenesis, processes that depend on the cytoplasmic domain of CEACAM1. By analysing the molecular requirements for CEACAM1-mediated internalization of bacteria, we surprisingly find that the CEACAM1 cytoplasmic domain is completely obsolete for bacterial uptake. Accordingly, CEACAM1-4L as well as a CEACAM1 mutant with a complete deletion of the cytoplasmic domain (CEACAM1 Delta CT) promote equivalent internalization of several human pathogens. CEACAM1-4L- and CEACAM1 Delta CT-mediated uptake proceeds in the presence of inhibitors of actin microfilament dynamics, which is in contrast to CEACAM3-mediated internalization. Bacteria-engaged CEACAM1-4L and CEACAM1 Delta CT, but not CEACAM3, localize to a gangliosid GM1- and GPI-anchored protein-containing portion of the plasma membrane. In addition, interference with cholesterol-rich membrane microdomains severely blocks bacterial uptake via CEACAM1-4L and CEACAM1 Delta CT, but not CEACAM3. Similar to GPI-anchored CEACAM6, both CEACAM1-4L as well as CEACAM1 Delta CT partition into a low-density, Triton-insoluble membrane fraction upon receptor clustering, whereas CEACAM3 is not detected in this fraction. Bacterial uptake by truncated CEACAM1 or chimeric CEACAM1/CEACAM3 molecules reveals that the transmembrane domain of CEACAM1 is responsible for its association with membrane microdomains. Together, these data argue for a functional role of lipid rafts in CEACAM1-mediated endocytosis that is promoted by the transmembrane domain of the receptor and that might be relevant for CEACAM1 function in physiologic settings.
机译:几种细菌病原体利用癌胚抗原相关细胞粘附分子(CEACAM)来促进附着和摄取到真核宿主细胞中。广泛表达的亚型CEACAM1参与细胞间粘附,细胞增殖调节,胰岛素稳态和新血管生成,这些过程取决于CEACAM1的胞质域。通过分析CEACAM1介导的细菌内在化的分子需求,我们惊奇地发现CEACAM1的胞质域对于细菌的吸收是完全过时的。因此,CEACAM1-4L以及具有完全缺失胞质结构域的CEACAM1突变体(CEACAM1 Delta CT)促进了几种人类病原体的等同内在化。 CEACAM1-4L和CEACAM1 Delta CT介导的摄取在肌动蛋白微丝动力学抑制剂的存在下进行,这与CEACAM3介导的内在化相反。细菌接合的CEACAM1-4L和CEACAM1 Delta CT,而不是CEACAM3,定位于质膜中含有神经节苷脂GM1和GPI锚定蛋白的部分。此外,对富含胆固醇的膜微区的干扰会严重阻止细菌通过CEACAM1-4L和CEACAM1 Delta CT摄取,但不会阻止CEACAM3。与GPI锚定的CEACAM6相似,CEACAM1-4L和CEACAM1 Delta CT在受体聚集后均分成低密度的,Triton不溶性膜组分,而在该组分中未检测到CEACAM3。截短的CEACAM1或嵌合CEACAM1 / CEACAM3分子对细菌的摄取表明,CEACAM1的跨膜结构域负责与膜微结构域的缔合。总之,这些数据证明了脂质筏在CEACAM1介导的内吞作用中的功能性作用,该功能由受体的跨膜结构域促进,并且可能与CEACAM1在生理环境中的功能有关。

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