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动态磷酸酶招募控制 B 细胞选择和致癌信号传导

英文原题:Dynamic phosphatase-recruitment controls B-cell selection and oncogenic signaling.

查看英文原题

Dynamic phosphatase-recruitment controls B-cell selection and oncogenic signaling.

PubMed 2023/03/15(内容时间) bioRxiv

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中文摘要

B细胞受体(BCR)信号的启动以及随后在生发中心发生的抗原遭遇,是B淋巴细胞发育过程中的里程碑事件,二者均以CD25表面表达急剧升高为标志。B细胞白血病(B-ALL)和淋巴瘤中的致癌信号同样诱导CD25表面表达。尽管CD25已知是T细胞和NK细胞上的IL2受体链,但其在B细胞上表达的意义尚不清楚。

我们基于遗传小鼠模型和工程化患者来源异种移植物的实验揭示,B细胞上表达的CD25并非作为IL2受体链发挥作用,而是组装了一个包含PKCδ、SHIP1和SHP1磷酸酶的抑制性复合物,用于对BCR信号或其致癌模拟信号进行反馈控制。与PKCδ、SHIP1和SHP1基因敲除的表型相呼应,条件性CD25缺失严重减少了早期B细胞亚群,但扩增了成熟B细胞群体并诱导了自身免疫。在源自B细胞发育早期(B-ALL)和晚期(淋巴瘤)阶段的B细胞恶性肿瘤中,CD25缺失在前者诱导细胞死亡,在后者加速增殖。临床结局注释反映了CD25缺失的相反效应:高CD25表达水平预测B-ALL患者临床结局不良,相反,对淋巴瘤患者则预测结局良好。

生化和相互作用组研究揭示了CD25在BCR反馈调节中的关键作用:BCR信号诱导PKCδ介导的CD25胞质尾部磷酸化(S 268)。遗传拯救实验确定CD25-S 268尾部磷酸化是招募SHIP1和SHP1磷酸酶以抑制BCR信号的核心结构要求。单点突变CD25 S268A消除了SHIP1和SHP1的招募与激活,从而限制了BCR信号的持续时间和强度。磷酸酶功能的丧失、自主性BCR信号以及Ca2+振荡在早期B细胞发育过程中诱导了无反应性和阴性选择,这与成熟B细胞中的过度增殖和自身抗体产生形成对比。这些发现凸显了CD25在组装抑制性磷酸酶以控制B细胞恶性肿瘤中的致癌信号以及通过阴性选择预防自身免疫疾病方面此前未被认识的作用。

展开英文摘要原文

Initiation of B-cell receptor (BCR) 1 signaling, and subsequent antigen-encounter in germinal centers 2,3 represent milestones of B-lymphocyte development that are both marked by sharp increases of CD25 surface-expression. Oncogenic signaling in B-cell leukemia (B-ALL) 4 and lymphoma 5 also induced CD25-surface expression. While CD25 is known as an IL2-receptor chain on T- and NK-cells 6-9 , the significance of its expression on B-cells was unclear.

Our experiments based on genetic mouse models and engineered patient-derived xenografts revealed that, rather than functioning as an IL2-receptor chain, CD25 expressed on B-cells assembled an inhibitory complex including PKCδ and SHIP1 and SHP1 phosphatases for feedback control of BCR-signaling or its oncogenic mimics. Recapitulating phenotypes of genetic ablation of PKCδ 10 - 12 , SHIP1 13,14 and SHP1 14, 15,16 , conditional CD25-deletion decimated early B-cell subsets but expanded mature B-cell populations and induced autoimmunity. In B-cell malignancies arising from early (B-ALL) and late (lymphoma) stages of B-cell development, CD25-loss induced cell death in the former and accelerated proliferation in the latter. Clinical outcome annotations mirrored opposite effects of CD25-deletion: high CD25 expression levels predicted poor clinical outcomes for patients with B-ALL, in contrast to favorable outcomes for lymphoma-patients.

Biochemical and interactome studies revealed a critical role of CD25 in BCR-feedback regulation: BCR-signaling induced PKCδ-mediated phosphorylation of CD25 on its cytoplasmic tail (S 268 ). Genetic rescue experiments identified CD25-S 268 tail-phosphorylation as central structural requirement to recruit SHIP1 and SHP1 phosphatases to curb BCR-signaling.

A single point mutation CD25 S268A abolished recruitment and activation of SHIP1 and SHP1 to limit duration and strength of BCR-signaling. Loss of phosphatase-function, autonomous BCR-signaling and Ca 2+ -oscillations induced anergy and negative selection during early B-cell development, as opposed to excessive proliferation and autoantibody production in mature B-cells.

These findings highlight the previously unrecognized role of CD25 in assembling inhibitory phosphatases to control oncogenic signaling in B-cell malignancies and negative selection to prevent autoimmune disease.

论文信息

作者
Lee J、Robinson ME、Sun R、Kume K、Ma N、Cosgun KN、Chan LN、Leveille E
文献类型
预印本
期刊
bioRxiv : the preprint server for biology2023 Mar 15
原文标识
PubMed 36993276 · DOI 10.1101/2023.03.13.532151