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The unexpected role of lymphotoxin beta receptor signaling in carcinogenesis: from lymphoid tissue formation to liver and prostate cancer development

机译:淋巴毒素β受体信号传导在癌变中的意外作用:从淋巴组织形成到肝癌和前列腺癌的发展

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摘要

The cytokines lymphotoxin (LT) alpha, beta and their receptor (LTbetaR) belong to the tumor necrosis factor (TNF) superfamily, whose founder-TNFalpha-was initially discovered due to its tumor necrotizing activity. LTbetaR signaling serves pleiotropic functions including the control of lymphoid organ development, support of efficient immune responses against pathogens due to maintenance of intact lymphoid structures, induction of tertiary lymphoid organs, liver regeneration or control of lipid homeostasis. Signaling through LTbetaR comprises the noncanonical/canonical nuclear factor-kappaB (NF-kappaB) pathways thus inducing chemokine, cytokine or adhesion molecule expression, cell proliferation and cell survival. Blocking LTbetaR signaling or Fcgamma-receptor mediated immunoablation of LT-expressing cells was demonstrated to be beneficial in various infectious or noninfectious inflammatory or autoimmune disorders. Only recently, LTbetaR signaling was shown to initiate inflammation-induced carcinogenesis, to influence primary tumorigenesis and to control reemergence of carcinoma in various cancer models through distinct mechanisms. Indeed, LTbetaR signaling inhibition has already been used as efficient anti-inflammatory, anti-cancer therapy in some experimental models. Here, we review the pleiotropic functions attributed to LT, the effects of its deregulation and extensively discuss the recent literature on LT's link to carcinogenesis.
机译:细胞因子淋巴毒素(LT)α,β及其受体(LTbetaR)属于肿瘤坏死因子(TNF)超家族,其创立者TNFalpha由于其肿瘤坏死活性而最初被发现。 LTbetaR信号传导具有多种功能,包括控制淋巴器官发育,支持由于维持完整的淋巴结构而对病原体的有效免疫反应,诱导第三淋巴器官,肝脏再生或脂质稳态的控制。通过LTbetaR发出的信号包含非经典/经典核因子-κB(NF-kappaB)途径,从而诱导趋化因子,细胞因子或粘附分子表达,细胞增殖和细胞存活。事实证明,阻断LTbetaR信号传导或Fcγ受体介导的LT表达细胞的免疫消融对多种感染性或非感染性炎症或自身免疫性疾病均有益。仅在最近,LTbetaR信号转导显示可引发炎症诱导的癌变,影响原发性肿瘤发生并通过不同的机制控制各种癌症模型中癌症的复发。实际上,在某些实验模型中,LTbetaR信号传导抑制已被用作有效的抗炎,抗癌疗法。在这里,我们回顾归因于LT的多效性功能,其放松管制的影响,并广泛讨论有关LT与致癌作用的联系的最新文献。

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