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CLIP-170 is essential for MTOC repositioning during T cell activation by regulating dynein localisation on the cell surface

机译:CLIP-170对于T细胞活化过程中MTOC的重新定位至关重要它通过调节细胞表面的动力蛋白定位来实现

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摘要

The microtubule-organizing centre (MTOC) is repositioned to the centre of the contacted cell surface, the immunological synapse, during T cell activation. However, our understanding of its molecular mechanism remains limited. Here, we found that the microtubule plus-end tracking cytoplasmic linker protein 170 (CLIP-170) plays a novel role in MTOC repositioning using fluorescence imaging. Inhibition of CLIP-170 phosphorylation impaired both MTOC repositioning and interleukin-2 (IL-2) expression. T cell stimulation induced some fraction of dynein to colocalise with CLIP-170 and undergo plus-end tracking. Concurrently, it increased dynein in minus-end-directed movement. It also increased dynein relocation to the centre of the contact surface. Dynein not colocalised with CLIP-170 showed both an immobile state and minus-end-directed movement at a velocity in good agreement with the velocity of MTOC repositioning, which suggests that dynein at the immunological synapse may pull the microtubules and the MTOC. Although CLIP-170 is phosphorylated by AMP-activated protein kinase (AMPK) irrespective of stimulation, phosphorylated CLIP-170 is essential for dynein recruitment to plus-end tracking and for dynein relocation. This indicates that dynein relocation results from coexistence of plus-end- and minus-end-directed translocation. In conclusion, CLIP-170 plays an indispensable role in MTOC repositioning and full activation of T cells by regulating dynein localisation.
机译:在T细胞活化过程中,微管组织中心(MTOC)重新定位到接触的细胞表面的中心点,即免疫突触。但是,我们对其分子机制的理解仍然有限。在这里,我们发现微管正端追踪细胞质接头蛋白170(CLIP-170)在使用荧光成像的MTOC重定位中发挥了新的作用。 CLIP-170磷酸化的抑制损害MTOC重新定位和白介素2(IL-2)表达。 T细胞刺激诱导动力蛋白的某些部分与CLIP-170共同定位并进行正向追踪。同时,它增加了负端定向运动中的动力蛋白。它也增加了动力蛋白在接触表面中心的重新定位。不能与CLIP-170共定位的动力蛋白显示出固定状态和负向运动,其移动速度与MTOC重新定位的速度非常吻合,这表明动力突触处的动力蛋白可能会拉动微管和MTOC。尽管不管刺激如何,CLIP-170都会被AMP激活的蛋白激酶(AMPK)磷酸化,但是磷酸化的CLIP-170对于将动力蛋白引入正向追踪和动力蛋白重新定位至关重要。这表明动力蛋白的重新定位是由正向和负向定向易位的共存引起的。总之,CLIP-170通过调节动力蛋白的定位在MTOC重新定位和T细胞的完全活化中起着不可或缺的作用。

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