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抗TNF抗体的跨膜TNF依赖性摄取

Transmembrane TNF-dependent uptake of anti-TNF antibodies.

作者信息

Deora Arun, Hegde Subramanya, Lee Jacqueline, Choi Chee-Ho, Chang Qing, Lee Cheryl, Eaton Lucia, Tang Hua, Wang Dongdong, Lee David, Michalak Mark, Tomlinson Medha, Tao Qingfeng, Gaur Nidhi, Harvey Bohdan, McLoughlin Shaun, Labkovsky Boris, Ghayur Tariq

机构信息

a AbbVie Bioresearch Center , Worcester , MA , USA.

b AbbVie Inc , North Chicago , IL , USA.

出版信息

MAbs. 2017 May/Jun;9(4):680-695. doi: 10.1080/19420862.2017.1304869. Epub 2017 Mar 21.

Abstract

TNF-α (TNF), a pro-inflammatory cytokine is synthesized as a 26 kDa protein, anchors in the plasma membrane as transmembrane TNF (TmTNF), and is subjected to proteolysis by the TNF-α converting enzyme (TACE) to release the 15 kDa form of soluble TNF (sTNF). TmTNF and sTNF interact with 2 distinct receptors, TNF-R1 (p55) and TNF-R2 (p75), to mediate the multiple biologic effects of TNF described to date. Several anti-TNF biologics that bind to both forms of TNF and block their interactions with the TNF receptors are now approved for the treatment of a variety of immune-mediated diseases. Several reports suggest that binding of anti-TNFs to TmTNF delivers an outside-to-inside 'reverse' signal that may also contribute to the efficacy of anti-TNFs. Some patients, however, develop anti-TNF drug antibody responses (ADA or immunogenicity). Here, we demonstrate biochemically that TmTNF is transiently expressed on the surface of lipopolysaccharide-stimulated primary human monocytes, macrophages, and monocyte-derived dendritic cells (DCs) and expression of TmTNF on the cell surface is enhanced following treatment of cells with TAPI-2, a TACE inhibitor. Importantly, binding of anti-TNFs to TmTNF on DCs results in rapid internalization of the anti-TNF/TmTNF complex first into early endosomes and then lysosomes. The internalized anti-TNF is processed and anti-TNF peptides can be eluted from the surface of DCs. Finally, tetanus toxin peptides fused to anti-TNFs are presented by DCs to initiate T cell recall proliferation response. Collectively, these observations may provide new insights into understanding the biology of TmTNF, mode of action of anti-TNFs, biology of ADA response to anti-TNFs, and may help with the design of the next generation of anti-TNFs.

摘要

肿瘤坏死因子-α(TNF-α,简称TNF)是一种促炎细胞因子,最初合成时为26 kDa的蛋白质,作为跨膜TNF(TmTNF)锚定在质膜上,并被TNF-α转换酶(TACE)进行蛋白水解,从而释放出15 kDa的可溶性TNF(sTNF)形式。TmTNF和sTNF与两种不同的受体,即TNF-R1(p55)和TNF-R2(p75)相互作用,介导了迄今为止所描述的TNF的多种生物学效应。目前,几种能结合两种形式的TNF并阻断它们与TNF受体相互作用的抗TNF生物制剂已被批准用于治疗多种免疫介导的疾病。有几份报告表明,抗TNF与TmTNF的结合会传递一种从外向内的“反向”信号,这可能也有助于抗TNF的疗效。然而,一些患者会产生抗TNF药物抗体反应(ADA或免疫原性)。在此,我们通过生化方法证明,TmTNF在脂多糖刺激的原代人单核细胞、巨噬细胞和单核细胞衍生的树突状细胞(DC)表面短暂表达,在用TACE抑制剂TAPI-2处理细胞后,细胞表面TmTNF的表达会增强。重要的是,抗TNF与DC上的TmTNF结合会导致抗TNF/TmTNF复合物迅速内化,首先进入早期内体,然后进入溶酶体。内化的抗TNF会被加工处理,抗TNF肽可以从DC表面洗脱下来。最后,与抗TNF融合的破伤风毒素肽会由DC呈递,以引发T细胞回忆增殖反应。总的来说,这些观察结果可能为理解TmTNF的生物学特性、抗TNF的作用模式、ADA对抗TNF反应的生物学特性提供新的见解,并可能有助于下一代抗TNF药物的设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/760e/5419086/aafe6a6ace9c/kmab-09-04-1304869-g001.jpg

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