Department of Pulmonary Medicine, Erasmus MC, University Medical Center, Rotterdam, The Netherlands.
Department of Biology, Institute of Genetics, University of Erlangen-Nuremberg, Erlangen, Germany.
Eur J Immunol. 2021 Sep;51(9):2251-2265. doi: 10.1002/eji.202048968. Epub 2021 Aug 16.
Bruton's tyrosine kinase (Btk) is a crucial signaling molecule in BCR signaling and a key regulator of B- cell differentiation and function. Btk inhibition has shown impressive clinical efficacy in various B-cell malignancies. However, it remains unknown whether inhibition additionally induces changes in BCR signaling due to feedback mechanisms, a phenomenon referred to as BCR rewiring. In this report, we studied the impact of Btk activity on major components of the BCR signaling pathway in mice. As expected, NF-κB and Akt/S6 signaling was decreased in Btk-deficient B cells. Unexpectedly, phosphorylation of several proximal signaling molecules, including CD79a, Syk, and PI3K, as well as the key Btk-effector PLCγ2 and the more downstream kinase Erk, were significantly increased. This pattern of BCR rewiring was essentially opposite in B cells from transgenic mice overexpressing Btk. Importantly, prolonged Btk inhibitor treatment of WT mice or mice engrafted with leukemic B cells also resulted in increased phosho-CD79a and phospho-PLCγ2 in B cells. Our findings show that Btk enzymatic function determines phosphorylation of proximal and distal BCR signaling molecules in B cells. We conclude that Btk inhibitor treatment results in rewiring of BCR signaling, which may affect both malignant and healthy B cells.
布鲁顿酪氨酸激酶(Btk)是 BCR 信号转导中的关键信号分子,也是 B 细胞分化和功能的关键调节剂。Btk 抑制在各种 B 细胞恶性肿瘤中显示出令人印象深刻的临床疗效。然而,目前尚不清楚 Btk 抑制是否会由于反馈机制导致 BCR 信号发生变化,这种现象被称为 BCR 重排。在本报告中,我们研究了 Btk 活性对小鼠 BCR 信号通路主要成分的影响。正如预期的那样,Btk 缺陷 B 细胞中 NF-κB 和 Akt/S6 信号降低。出乎意料的是,包括 CD79a、Syk 和 PI3K 在内的几个近端信号分子的磷酸化以及关键的 Btk 效应物 PLCγ2 和更下游的激酶 Erk 的磷酸化显著增加。这种 BCR 重排的模式在过表达 Btk 的转基因小鼠的 B 细胞中基本相反。重要的是,WT 小鼠或移植白血病 B 细胞的小鼠的 Btk 抑制剂延长治疗也导致 B 细胞中 phospho-CD79a 和 phospho-PLCγ2 的增加。我们的研究结果表明,Btk 酶活性决定了 B 细胞中 BCR 信号转导的磷酸化。我们得出结论,Btk 抑制剂治疗会导致 BCR 信号的重排,这可能会影响恶性和健康的 B 细胞。