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ALG-2 couples T cell activation and apoptosis by regulating proteasome activity and influencing MCL1 stability

机译:通过调节蛋白酶体活性并影响MCL1稳定性,通过调节蛋白酶体活性和细胞凋亡来实现偶联和凋亡

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摘要

T cell homeostasis is critical for the proper function of the immune system. Following the sharp expansion upon pathogen infection, most T cells die in order to keep balance in the immune system, a process which is controlled by death receptors during the early phase and Bcl-2 proteins in the later phase. It is still highly debated whether the apoptosis of T cells is determined from the beginning, upon activation, or determined later during the contraction. MCL1, a Bcl-2 family member, plays a pivotal role in T cell survival. As a fast turnover protein, MCL1 levels are tightly regulated by the 26S proteasome-controlled protein degradation process. In searching for regulatory factors involved in the actions of MCL1 during T cell apoptosis, we found that ALG-2 was critical for MCL1 stability, a process mediated by a direct interaction between ALG-2 and Rpn3, a key component of the 26S proteasome. As a critical calcium sensor, ALG-2 regulated the activity of the 26S proteasome upon increases to cytosolic calcium levels following T cell activation, this consequently influenced the stability of MCL1 and accelerated the T cell "death" process, leading to T cell contraction and restoration of immune homeostasis. Our study provides support for the notion that T cells are destined for apoptosis after activation, and echoes the previous study about the function of ALG-2 in T cell death.
机译:T细胞稳态对于免疫系统的适当功能至关重要。在病原体感染的急剧扩张之后,大多数T细胞死于免疫系统中的平衡,在早期相和Bcl-2蛋白期间在后期的死亡受体控制的方法。仍然高度争论是否从开始时从开始时从开始时确定T细胞的凋亡,或者在收缩期间稍后确定。 Bcl-2家族成员MCL1在T细胞存活中起着枢轴作用。作为快速周转蛋白,MCL1水平受26S蛋白酶体受控蛋白质降解过程紧密调节。在寻找在T细胞凋亡期间MCL1作用的调节因素时,我们发现ALG-2对于MCL1稳定性至关重要,该过程是通过ALG-2和RPN3之间的直接相互作用介导的方法,这是26s蛋白酶组的关键组分。作为临界钙传感器,ALG-2在T细胞活化后增加26s蛋白酶体的活性,因此影响了MCL1的稳定性并加速了T细胞的稳定性,导致T细胞收缩免疫稳态恢复。我们的研究提供了对活化后T细胞注定用于细胞凋亡的观念的支持,并回应前一项关于ALAL-2在T细胞死亡中的功能的研究。

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