多组学分析揭示了BCAT1在b细胞受体和TLR9激活mTOR中的关键作用。

Rui Guo,Yizhe Sun,Matthew Y Lim,Hardik Shah,Joao A Paulo,Rahaman A Ahmed,Weixing Li,Yuchen Zhang,Haopeng Yang,Liang Wei Wang,Daniel Strebinger,Nicholas A Smith,Meng Li,Merrin Man Long Leong,Michael Lutchenkov,Jin-Hua Liang,Zhixuan Li,Yin Wang,Rishi Puri,Ari Melnick,Michael R Green,John M Asara,Adonia E Papathanassiu,Duane R Wesemann,Steven P Gygi,Vamsi K Mootha,Benjamin E Gewurz
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引用次数: 0

摘要

b淋巴细胞发挥主要的适应性免疫作用,产生抗体并驱动t细胞反应。然而,免疫代谢网络如何支持b细胞在不同受体刺激下的激活和分化仍不完全清楚。为了深入了解,我们系统地研究了急性原代人b细胞对b细胞受体(BCR)、toll样受体9 (TLR9)、cd40配体(CD40L)、白细胞介素-4 (IL4)或其组合的转录、翻译和代谢组学反应。t非依赖性BCR/TLR9共刺激,可驱动恶性和自身免疫性b细胞状态,高度诱导转氨酶支链氨基酸转氨酶1 (BCAT1),其定位于溶酶体膜,支持支链氨基酸合成和雷帕霉素复合物1 (mTORC1)的机制靶点激活。BCAT1抑制抑制BCR/TLR9,但不抑制CD40L/ il4触发的b细胞增殖、IL10表达和BCR/TLR途径驱动的淋巴瘤异种移植物的生长。这些结果提供了宝贵的资源,揭示了受体介导的免疫代谢重塑以支持关键的b细胞表型,并确定了BCAT1作为活化的b细胞治疗靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-omic analysis reveals a key BCAT1 role in mTOR activation by B-cell receptor and TLR9.
B-lymphocytes play major adaptive immune roles, producing antibody and driving T-cell responses. However, how immunometabolism networks support B-cell activation and differentiation in response to distinct receptor stimuli remains incompletely understood. To gain insights, we systematically investigated acute primary human B-cell transcriptional, translational and metabolomic responses to B-cell receptor (BCR), Toll-like receptor 9 (TLR9), CD40-ligand (CD40L), interleukin-4 (IL4) or combinations thereof. T-independent BCR/TLR9 co-stimulation, which drives malignant and autoimmune B-cell states highly induced the transaminase branched chain amino acid transaminase 1 (BCAT1), which localized to lysosomal membranes to support branched chain amino acid synthesis and mechanistic target of rapamycin complex 1 (mTORC1) activation. BCAT1 inhibition blunted BCR/TLR9, but not CD40L/IL4-triggered B-cell proliferation, IL10 expression and BCR/TLR pathway-driven lymphoma xenograft outgrowth. These results provide a valuable resource, reveal receptor-mediated immunometabolism remodeling to support key B-cell phenotypes and identify BCAT1 as an activated B-cell therapeutic target.
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