Abstract B46: Roles for LKB1 at the immune synapse during B-cell activation and antitumor responses

L. Jimenez, Lynnea R. Waters, Diane N. H. Kim, N. Walsh, M. Teitell
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引用次数: 0

Abstract

Defense from infection or cancer is provided by coordinated actions of the innate and adaptive immune system, including B lymphocytes that generate antibodies (Abs) against pathogens or tumor antigens. B cells establish immune synapses with antigen-presenting cells during activation to initiate Ab-production, which may include entrance into a germinal center (GC) reaction to generate very high-affinity Abs. Establishment of an immune synapse requires polarity proteins to coordinate uptake and processing of external antigens. For this, there is a highly conserved family of partitioning defective (Par) proteins that mediates cell polarity in multiple cell types. In particular, Par-3, a member of the Par polarity complex (Par-3, aPKC, Par-6), is a key protein that localizes to the immune synapse and is required for B cell polarization and immune synapse formation. Recently, we showed that LKB1, the mammalian homolog of Par-4 and a regulator of energy metabolism, controls B cell activation, GC formation and differentiation into Ab-producing plasma cells. However, roles for LKB1 in B cell polarity, immune synapse formation and anti-tumor immunity are unknown. Based on previous studies showing that LKB1 induces cell polarity and co-localizes with Par-3, we hypothesize that LKB1 is required for Par complex assembly and controls immune synapse formation during B cell activation. Subcellular analysis of LKB1 by immunofluorescence microscopy in mouse primary B cells reveals LKB1 co-localization with aPKC in membrane protrusions required for immune synapse formation. Interestingly, B cell specific LKB1 knock out (BKO) mice exhibit mislocalization of aPKC/Par complex, loss of lymphoid tissue polarity and spontaneous B cell activation that results in the formation of giant GCs and secretion of proinflammatory cytokines and chemokines. Similar inflammatory profiles with T cell chemoattractants are known to recruit CD8+ cytotoxic T lymphocytes (CTLs) into solid tumors, such as melanoma. These similarities suggest that LKB1 inactivated B cells in the tumor microenvironment could stimulate T cell infiltrates into solid tumors. Our studies suggest that physiologic inactivation of LKB1 in B cells controls B cell activation, GC formation and potentially infiltration of T cells in the tumor microenvironment during anti-tumor responses. We are currently utilizing an exciting genetic mouse melanoma model to examine the role of LKB1 in promoting anti-tumor immunity. Together, our studies assess LKB1 as a target for augmenting adaptive immunity against cancer. Citation Format: Laura Jimenez, Lynnea Waters, Diane N.H. Kim, Nicole Walsh, Michael A. Teitell. Roles for LKB1 at the immune synapse during B-cell activation and antitumor responses [abstract]. In: Proceedings of the AACR Special Conference on Tumor Immunology and Immunotherapy; 2017 Oct 1-4; Boston, MA. Philadelphia (PA): AACR; Cancer Immunol Res 2018;6(9 Suppl):Abstract nr B46.
摘要:LKB1在b细胞活化和抗肿瘤反应中的免疫突触作用
对感染或癌症的防御是由先天和适应性免疫系统的协调作用提供的,包括B淋巴细胞产生针对病原体或肿瘤抗原的抗体(Abs)。B细胞在活化过程中与抗原呈递细胞建立免疫突触,以启动抗体的产生,这可能包括进入生发中心(GC)反应以产生非常高亲和力的抗体。免疫突触的建立需要极性蛋白来协调外部抗原的摄取和加工。为此,有一个高度保守的分割缺陷(Par)蛋白家族在多种细胞类型中介导细胞极性。特别是Par极性复合物(Par-3, aPKC, Par-6)的成员Par-3是定位于免疫突触的关键蛋白,是B细胞极化和免疫突触形成所必需的。最近,我们发现LKB1, par4的哺乳动物同源物和能量代谢调节剂,控制B细胞的活化、GC的形成和向产生ab的浆细胞的分化。然而,LKB1在B细胞极性、免疫突触形成和抗肿瘤免疫中的作用尚不清楚。基于先前的研究表明LKB1诱导细胞极性并与Par-3共定位,我们假设LKB1是Par复合物组装所必需的,并在B细胞激活过程中控制免疫突触的形成。通过免疫荧光显微镜对小鼠原代B细胞中LKB1的亚细胞分析发现,LKB1与aPKC在免疫突触形成所需的膜突起中共定位。有趣的是,B细胞特异性LKB1敲除(BKO)小鼠表现出aPKC/Par复合物的错误定位,淋巴组织极性丧失和自发的B细胞激活,导致巨大GCs的形成和促炎细胞因子和趋化因子的分泌。已知T细胞化学引诱剂的类似炎症特征可将CD8+细胞毒性T淋巴细胞(ctl)募集到实体肿瘤中,如黑色素瘤。这些相似性提示肿瘤微环境中LKB1灭活的B细胞可以刺激T细胞浸润到实体瘤中。我们的研究表明,在抗肿瘤反应过程中,B细胞中LKB1的生理性失活控制了B细胞的活化、GC的形成和肿瘤微环境中T细胞的潜在浸润。我们目前正在利用一种令人兴奋的遗传小鼠黑色素瘤模型来研究LKB1在促进抗肿瘤免疫中的作用。总之,我们的研究评估了LKB1作为增强癌症适应性免疫的靶标。引文格式:Laura Jimenez, Lynnea Waters, Diane N.H. Kim, Nicole Walsh, Michael A. Teitell。LKB1在b细胞活化和抗肿瘤反应中免疫突触的作用[摘要]。摘自:AACR肿瘤免疫学和免疫治疗特别会议论文集;2017年10月1-4日;波士顿,MA。费城(PA): AACR;癌症免疫学杂志,2018;6(9增刊):摘要nr B46。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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