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The Transmembrane Domains of L-selectin and CD44 Regulate Receptor Cell Surface Positioning and Leukocyte Adhesion under Flow

机译:L-选择蛋白和CD44的跨膜域调节流动下的受体细胞表面定位和白细胞粘附。

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摘要

During inflammation and immune surveillance, initial contacts (tethering) between free-flowing leukocytes and the endothelium are vitally dependent on the presentation of the adhesion receptor L-selectin on leukocyte microvilli. Determinants that regulate receptor targeting to microvilli are, however, largely elusive. Therefore, we systematically swapped the extracellular (EC), transmembrane (TM), and intracellular (IC) domains of L-selectin and CD44, a hyaluronan receptor expressed on the cell body and excluded from microvilli. Electron microscopy of transfected human myeloid K562 cells showed that the highly conserved TM domains are responsible for surface positioning. The TM segment of L-selectin forced chimeric molecules to microvilli, and the CD44 TM domain evoked expression on the cell body, whereas the IC and EC domains hardly influenced surface localization. Transfectants with microvillus-based chimeras showed a significantly higher adhesion rate under flow but not under static conditions compared with cells with cell body-expressed receptors. Substitution of the IC domain of L-selectin caused diminished tethering but no change in surface distribution, indicating that both microvillus positioning and cytoskeletal anchoring contribute to leukocyte tethering. These findings demonstrate that TM domains of L-selectin and CD44 play a crucial role in cell adhesion under flow by targeting receptors to microvilli or the cell body, respectively.
机译:在炎症和免疫监视过程中,自由流动的白细胞和内皮细胞之间的初始接触(束缚)在很大程度上取决于白细胞微绒毛上粘附受体L-选择素的呈递。然而,调节受体靶向微绒毛的决定因素在很大程度上难以捉摸。因此,我们系统地交换了L-选择蛋白和CD44(一种在细胞体上表达并从微绒毛中排除的透明质酸受体)的细胞外(EC),跨膜(TM)和细胞内(IC)域。转染的人类骨髓K562细胞的电子显微镜显示,高度保守的TM结构域负责表面定位。 L-选择蛋白的TM段迫使嵌合分子变成微绒毛,而CD44 TM结构域引起细胞体表达,而IC和EC结构域几乎不影响表面定位。与具有细胞体表达受体的细胞相比,具有基于微绒毛的嵌合体的转染子在流动条件下显示出显着更高的粘附率,而在静态条件下则没有。 L-选择蛋白的IC结构域的取代引起的束缚减少,但表面分布没有变化,表明微绒毛定位和细胞骨架锚定都有助于白细胞束缚。这些发现表明,L-选择蛋白和CD44的TM结构域通过将受体分别靶向微绒毛或细胞体而在流动下的细胞粘附中起关键作用。

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