PO.MCB04.01 · 分子与细胞生物学

Toll样受体的激活促进CLL细胞中XBP1s的表达

Activation of toll-like receptors promotes the expression of XBP1s in CLL cells

编号 7289 展板 1 时间 4/22 09:00–12:00 区域 Section 22 主讲 Chih-Chi Hu, PhD
分会场 Hypoxic and Proteotoxic Stress Response
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作者与单位 Authors & Affiliations

Chih-Hang Anthony Tang, Chih-Chi Andrew Hu

Houston Methodist Research Institute, Houston, TX

摘要 Abstract

中文摘要
Toll样受体(TLR)是几乎存在于所有免疫细胞中的一类跨膜蛋白,负责识别广泛的病原体分子模式,包括DNA、RNA、糖类和脂质。小鼠和人B细胞均表达TLR,参与固有免疫和适应性免疫反应的激活。多项研究显示TLR与B细胞受体(BCR)信号之间存在串扰,表明TLR在B细胞存活、增殖和分化中具有重要作用。慢性淋巴细胞白血病(CLL)是成人中最常见的B细胞癌症,以其多变的临床结局而闻名。CLL的定义是白血病细胞在血液、脾脏、淋巴结和骨髓中的累积。来自淋巴微环境的信号促进恶性CLL克隆的增殖,尤其是那些BCR信号更为明显的克隆。TLR信号可能放大BCR诱导的细胞增殖,从而加速CLL进展。剪接型X盒结合蛋白1(XBP1s)是一种负责内质网(ER)应激反应的转录因子。XBP1s对浆细胞分化和抗体产生至关重要。此前,我们观察到B细胞在用TLR4配体脂多糖(LPS)和TLR9配体甲基化CpG-DNA(CpG)处理后产生XBP1s。这些及其他TLR配体有可能诱导特定CLL群体的增殖,从而阐明每种TLR在CLL发生发展中的独特作用。在本研究中,我们表明除LPS和CpG外的TLR激动剂也能够介导小鼠脾脏B细胞中XBP1s表达的增加。接下来,我们利用Eμ-TCL1小鼠模型研究TLR刺激对CLL细胞的影响,因为这些小鼠中发生的CLL类似于人类侵袭性IGHV未突变型CLL。与小鼠B细胞相比,小鼠CLL细胞在TLR刺激后显示出XBP1s表达的显著增加。一致地,与从同一小鼠分离的癌前B细胞相比,CLL细胞对TLR配体的反应中表达更高水平的XBP1s。恶性CLL细胞常常下调其干扰素基因刺激因子(STING)蛋白的表达,导致BCR的表面表达增加。从STING KO/Eμ-TCL1小鼠中纯化的CLL细胞确实对TLR激活作出反应,表达比其对照同窝小鼠更高水平的XBP1s。因此,我们假设TLR诱导的XBP1s表达可以进一步调节STING缺陷型CLL细胞中的BCR信号,以促进恶性进展。
查看英文原文 English abstract
Toll-like receptors (TLRs) are a family of transmembrane proteins found in nearly all immune cells and are responsible for recognizing a broad range of pathogenic molecular patterns, including DNA, RNA, sugars, and lipids. Mouse and human B cells express TLRs, contributing to activation of both the innate and adaptive immune responses. Several studies have shown crosstalk between TLR and B cell receptor (BCR) signaling, indicating an important role for TLRs in B cell survival, proliferation, and differentiation. Chronic lymphocytic leukemia (CLL) is the most common B-cell cancer in adults and is known for its variable clinical outcomes. CLL is defined by the accumulation of leukemic cells in the blood, spleens, lymph nodes, and bone marrow. Signals from the lymphoid microenvironment contribute to proliferation of malignant CLL clones, especially in those whose BCR signaling is more pronounced. TLR signaling may amplify BCR-induced cell proliferation and thus accelerate CLL progression. Spliced X-box binding protein 1 (XBP1s) is a transcription factor responsible for endoplasmic reticulum (ER) stress response. XBP1s is vital to plasma cell differentiation and antibody production. Previously, we observed that B cells produce XBP1s in response to treatment with TLR4 ligand lipopolysaccharide (LPS) and TLR9 ligand methylated CpG-DNA (CpG). It is possible that these and other TLR ligands may induce proliferation of specific CLL populations, illuminating the unique role of each TLR in the development of CLL. In this study, we showed that TLR agonists, other than LPS and CpG, were capable of mediating increased expression of XBP1s in mouse splenic B cells. Next, we utilized the Eµ-TCL1 mouse model to investigate the effects of TLR stimulation in CLL cells because CLL developed in these mice resembles the aggressive IGHV-unmutated type of human CLL. When compared to mouse B cells, mouse CLL cells were shown to drastically increase XBP1s expression after TLR stimulation. Consistently, when compared with precancerous B cells isolated from the same mouse, CLL cells expressed higher XBP1s levels in response to TLR ligands. Malignant CLL cells frequently downregulated their expression of stimulator of interferon genes (STING) protein, leading to increased surface expression of the BCR. CLL cells purified from STING KO /Eµ-TCL1 mice indeed responded to TLR activation by expressing higher levels of XBP1s than those from their control littermates. We thus hypothesize that TLR-induced expression of XBP1s can further modulate BCR signaling in STING-deficient CLL cells to promote malignant progression.
利益披露 Disclosure
C. A. Tang, None.. C. A. Hu, None.

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