Department of Immunology, School of Basic Medical Sciences, Peking University, 100191, Beijing, China.
NHC Key Laboratory of Medical Immunology, Peking University, 100191, Beijing, China.
Leukemia. 2019 Jun;33(6):1475-1486. doi: 10.1038/s41375-018-0331-6. Epub 2018 Dec 20.
B7-H3 (CD276) is broadly overexpressed by multiple human cancers. It plays a vital role in tumor progression and has been accepted as one of the inhibitory B7 family checkpoint molecules. To identify the functions and underlying mechanisms of B7-H3 in multiple myeloma, we analyzed B7-H3 expression in myeloma patients and used siRNAs and overexpression plasmid of B7-H3 to investigate its roles and downstream signaling molecules in myeloma cell lines. The results showed that surface expression of B7-H3 was upregulated in myeloma samples and cell lines. Lower expression of B7-H3 in myeloma cells was associated with better progression-free survival. Myeloma cell survival, drug resistance, and tumor growth could be promoted by B7-H3. The molecular basis for these functional roles of B7-H3 involved the activation of JAK2/STAT3 via redox-mediated oxidation and activation of Src. We further identified a STAT3-promoting signaling pathway by which oxidant-mediated Src phosphorylation led to secondary activation of the E3 ubiquitin ligase c-Cbl. Activated c-Cbl subsequently caused specific proteasomal degradation of SOCS3, a negative regulator of JAK2/STAT3. These data indicate B7-H3's important role in the activation of ROS/Src/c-Cbl pathway in multiple myeloma which integrates redox regulation and sustained STAT3 activation at the level of degradation of STAT3 suppressor.
B7-H3(CD276)在多种人类癌症中广泛过表达。它在肿瘤进展中起着至关重要的作用,并已被认为是抑制性 B7 家族检查点分子之一。为了确定 B7-H3 在多发性骨髓瘤中的功能和潜在机制,我们分析了骨髓瘤患者中 B7-H3 的表达,并使用 siRNA 和 B7-H3 的过表达质粒研究了其在骨髓瘤细胞系中的作用及其下游信号分子。结果表明,B7-H3 的表面表达在骨髓瘤样本和细胞系中上调。骨髓瘤细胞中 B7-H3 的低表达与更好的无进展生存期相关。B7-H3 可促进骨髓瘤细胞的存活、耐药性和肿瘤生长。B7-H3 的这些功能作用的分子基础涉及通过氧化还原介导的氧化和 Src 的激活来激活 JAK2/STAT3。我们进一步确定了一个 STAT3 促进信号通路,其中氧化剂介导的 Src 磷酸化导致 E3 泛素连接酶 c-Cbl 的二次激活。激活的 c-Cbl 随后导致 JAK2/STAT3 的负调节剂 SOCS3 的特异性蛋白酶体降解。这些数据表明 B7-H3 在多发性骨髓瘤中 ROS/Src/c-Cbl 通路的激活中起着重要作用,该通路在 STAT3 抑制因子的降解水平上整合了氧化还原调节和持续的 STAT3 激活。