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首页> 外文期刊>Journal of immunotherapy >Ligation of CD47 induces G1 arrest in EBV-transformed B cells through ROS generation, p38 MAPK/JNK activation, and Tap73 upregulation
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Ligation of CD47 induces G1 arrest in EBV-transformed B cells through ROS generation, p38 MAPK/JNK activation, and Tap73 upregulation

机译:CD47的连接通过ROS产生,p38 MAPK / JNK激活和Tap73上调诱导EBV转化的B细胞中的G1阻滞

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摘要

CD47 is expressed in normal activated cells as well as in several tumors. It also has been implicated as having antiangiogenic and antimetastatic properties, but its roles in Epstein-Barr virus (EBV)-transformed B cells are still not fully understood. Herein, we report that EBV infection induced CD47 surface expression on B cells, and CD47 ligation with anti-CD47 mAb (B6H12) reduced cell proliferation and induced G1 arrest. CD47-induced G 1 arrest was mediated through increased cyclin-dependent kinase inhibitors (CDKi) and a simultaneously decreased CDK/cyclins, and p38 MAPK/JNK activation preceded binding of CDKi-CDK. Moreover, reactive oxygen species (ROS) generation and upregulation of both TAp73 and ER stress sensor proteins were detected after CD47 ligation, and p38 inhibitor SB203580 and JNK inhibitor SP600125 blocked upregulation of TAp73 and cell cycle arrest. We investigated whether ROS generation is the initial event of CD47-mediated G1 arrest because ROS scavenger NAC effectively abrogated the majority of CD47-mediated responses but SB203580 and SP600125 did not block ROS production. Taken together, we concluded that CD47 ligation on EBV-transformed B cells led to G1, arrest by ROS generation and, subsequently, there was p38 MAPK/JNK pathway activation, ER stress triggering, and TAp73 upregulation. Our findings provide data supporting CD47 as a feasible target for EBV-associated tumor therapy.
机译:CD47在正常的活化细胞以及几种肿瘤中表达。它也被认为具有抗血管生成和抗转移特性,但其在爱泼斯坦-巴尔病毒(EBV)转化的B细胞中的作用仍不完全清楚。在本文中,我们报道EBV感染诱导B细胞CD47表面表达,并且CD47与抗CD47 mAb(B6H12)的连接减少了细胞增殖并诱导了G1阻滞。 CD47诱导的G 1阻滞是通过增加细胞周期蛋白依赖性激酶抑制剂(CDKi)和同时降低CDK / cyclins介导的,并且p38 MAPK / JNK激活先于CDKi-CDK结合。此外,CD47连接后,检测到了TAp73和ER应激传感器蛋白的活性氧(ROS)生成和上调,p38抑制剂SB203580和JNK抑制剂SP600125阻止了TAp73的上调和细胞周期停滞。我们调查了ROS的产生是否是CD47介导的G1阻滞的最初事件,因为ROS清除剂NAC有效地消除了大多数CD47介导的应答,但SB203580和SP600125并未阻止ROS的产生。两者合计,我们得出结论,在EBV转化的B细胞上的CD47连接导致G1,被ROS生成所阻滞,随后出现p38 MAPK / JNK途径激活,ER应激触发和TAp73上调。我们的发现提供了数据支持CD47作为EBV相关肿瘤治疗的可行目标。

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