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mTOR在产生与维持体液免疫方面具有不同的功能。

mTOR has distinct functions in generating versus sustaining humoral immunity.

作者信息

Jones Derek D, Gaudette Brian T, Wilmore Joel R, Chernova Irene, Bortnick Alexandra, Weiss Brendan M, Allman David

出版信息

J Clin Invest. 2016 Nov 1;126(11):4250-4261. doi: 10.1172/JCI86504. Epub 2016 Oct 17.

Abstract

Little is known about the role of mTOR signaling in plasma cell differentiation and function. Furthermore, for reasons not understood, mTOR inhibition reverses antibody-associated disease in a murine model of systemic lupus erythematosus. Here, we have demonstrated that induced B lineage-specific deletion of the gene encoding RAPTOR, an essential signaling adaptor for rapamycin-sensitive mTOR complex 1 (mTORC1), abrogated the generation of antibody-secreting plasma cells in mice. Acute treatment with rapamycin recapitulated the effects of RAPTOR deficiency, and both strategies led to the ablation of newly formed plasma cells in the spleen and bone marrow while also obliterating preexisting germinal centers. Surprisingly, although perturbing mTOR activity caused a profound decline in serum antibodies that were specific for exogenous antigen or DNA, frequencies of long-lived bone marrow plasma cells were unaffected. Instead, mTORC1 inhibition led to decreased expression of immunoglobulin-binding protein (BiP) and other factors needed for robust protein synthesis. Consequently, blockade of antibody synthesis was rapidly reversed after termination of rapamycin treatment. We conclude that mTOR signaling plays critical but diverse roles in early and late phases of antibody responses and plasma cell differentiation.

摘要

关于mTOR信号通路在浆细胞分化和功能中的作用,人们了解甚少。此外,出于未知原因,mTOR抑制可逆转系统性红斑狼疮小鼠模型中的抗体相关疾病。在此,我们证明,诱导B细胞谱系特异性缺失编码RAPTOR的基因(雷帕霉素敏感的mTOR复合物1(mTORC1)的一种必需信号转导衔接子),可消除小鼠体内分泌抗体的浆细胞的产生。雷帕霉素急性处理重现了RAPTOR缺陷的效应,这两种策略均导致脾脏和骨髓中新形成的浆细胞消失,同时也消除了预先存在的生发中心。令人惊讶的是,尽管干扰mTOR活性导致对外源抗原或DNA具有特异性的血清抗体大幅下降,但长寿骨髓浆细胞的频率未受影响。相反,mTORC1抑制导致免疫球蛋白结合蛋白(BiP)及其他强大蛋白质合成所需因子的表达降低。因此,雷帕霉素处理终止后,抗体合成的阻断迅速逆转。我们得出结论,mTOR信号通路在抗体应答和浆细胞分化的早期和晚期阶段发挥着关键但不同的作用。

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