依赖于低亲和力 LFA1 的外入信号通过 Rabin8-Rab8 轴介导热度调节

N. Kondo, Yoshihiro Ueda, T. Kinashi
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引用次数: 0

摘要

由白细胞整合素 LFA1 和细胞间粘附分子(ICAM)介导的淋巴细胞相互作用对淋巴细胞的迁移和抗原识别非常重要。整合素通过调节配体结合亲和力和亲和性(效价)来调节。虽然高亲和力 LFA1 的结合机制已得到广泛研究,但低亲和力多价结合启动粘附的分子机制仍不清楚。我们以前的研究表明,ICAM1 和能识别特定 LFA1 构象的单克隆抗体会诱导 LFA1 在接触面聚集。在这里,我们发现小 GTP 酶 Rab8 对于 LFA1 在细胞接触区的胞内转运和聚集至关重要,这种转运和聚集是由低亲和力 LFA1 依赖性外-内信号传导介导的。超分辨率显微镜显示,Rab8 与 LFA1 共同定位在接触膜附近的小囊泡中。Rab8 失活会降低 ICAM1 依赖性粘附,并大大降低接触膜上的 LFA1 密度。GTP结合的Rab8活性形式通过与LFA1共同牵引,增加了细胞的粘附性并促进了LFA1在接触区域的聚集。低亲和力构象依赖性外-内信号通过鸟嘌呤交换因子Rabin8诱导了Rab8的活化,这种信号诱导Rab8在细胞接触区的活化与Rap1无关。ICAM1 在支撑平面脂质双分子层上的单分子成像显示,Rab8 增加了 LFA1-ICAM1 相互作用的频率,但不影响其结合寿命,这表明 Rab8 主要参与调节 LFA1 的热敏性而非 LFA1 的亲和性。本研究结果强调了低亲和力构象依赖性外-内信号通过 Rabin8-Rab8 轴导致启动 LFA1 运输到接触区的重要性。
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Low-affinity LFA1-dependent outside-in signaling mediates avidity modulation via the Rabin8-Rab8 axis
Lymphocyte interactions mediated by leukocyte integrin LFA1 and intercellular adhesion molecules (ICAMs) are important for lymphocyte trafficking and antigen recognition. Integrins are regulated by the modulation of ligand-binding affinity and avidity (valency). Although the mechanism underlying high-affinity LFA1 binding has been investigated extensively, the molecular mechanisms by which low-affinity multivalent binding initiates adhesion remain unclear. We previously showed that ICAM1 and monoclonal antibodies that recognize specific LFA1 conformations induce the accumulation of LFA1 at the contact surface. Here, we found that the small GTPase Rab8 is critical for intracellular transport and accumulation of LFA1 at cell contact areas mediated by low-affinity LFA1-dependent outside-in signaling. Super-resolution microscopy revealed that Rab8 co-localized with LFA1 in small vesicles near the contact membrane. Inactivation of Rab8 decreased ICAM1-dependent adhesion and substantially reduced LFA1 density on the contact membrane. The GTP-bound active form of Rab8 increased cell adhesiveness and promoted LFA1 accumulation at the contact area through co-trafficking with LFA1. Rab8 activation was induced by low-affinity conformation-dependent outside-in signaling via the guanine exchange factor Rabin8, which induced Rab8 activation at the cell contact area independent of Rap1. Single-molecule imaging of ICAM1 on a supported planner lipid bilayer demonstrated that Rab8 increased the frequency of LFA1-ICAM1 interactions without affecting their binding lifetime, indicating that Rab8 is mainly involved in the modulation of LFA1 avidity rather than LFA1 affinity. The present findings underscore the importance of low-affinity conformation-dependent outside-in signaling via the Rabin8-Rab8 axis leading to initiation of LFA1 transport to the contact area.
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