RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:HLA-G: Too Much or Too Little? Role in Cancer and Autoimmune Disease.
HLA-G: Too Much or Too Little? Role in Cancer and Autoimmune Disease.
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HLA-G是一种具有免疫调节特性的非经典HLA I类分子。它最初在母胎界面被描述,后来发现该分子在某些免疫豁免组织中组成性表达,如角膜、内皮和红系前体细胞以及胸腺。HLA-G的免疫抑制作用是通过与其同源受体相互作用来发挥的,这些受体表达于免疫活性细胞上,如表达于NK细胞、B细胞、T细胞和APC上的ILT2;表达于APC上的ILT4;存在于NK细胞表面的KIR;以及最后,共受体CD8。由于这些免疫调节功能,HLA-G参与了多个过程,其中包括器官移植、病毒感染、癌症进展和自身免疫。近年来,已在多种恶性肿瘤中描述了HLA-G在肿瘤上的新表达。事实上,肿瘤进展与该分子的存在密切相关,因为它发挥耐受原性功能,抑制免疫系统细胞并促进肿瘤逃逸。3'UTR区域的多个多态性决定了HLA-G表达的变化(其中包括14bp和+3142C/G),这些多态性已与不同肿瘤类型患者的发生和结局相关。
此外,近年来多项研究表明,HLA-G在自身免疫性疾病的控制中发挥重要作用。HLA-G限制这些疾病进展的能力已得到证实,事实上,该分子的水平及其多个多态性已与自身免疫性疾病发生易感性增加以及疾病严重程度增加相关。
因此,在肿瘤患者或自身免疫性疾病患者的靶组织中调节HLA-G表达,可能是治疗这些病理状况的潜在治疗策略。
HLA-G is a non-classical HLA class I molecule with immunomodulatory properties. It was initially described at the maternal-fetal interface, and it was later found that this molecule was constitutively expressed on certain immuneprivileged tissues, such as cornea, endothelial and erythroid precursors, and thymus. The immunosuppressive effect of HLA-G is exerted through the interaction with its cognate receptors, expressed on immunocompetent cells, like ILT2, expressed on NK, B, T cells and APCs; ILT4, on APCs; KIR, found on the surface of NK cells; and finally, the co-receptor CD8. Because of these immunomodulatory functions, HLA-G has been involved in several processes, amongst which organ transplantation, viral infections, cancer progression, and autoimmunity. HLA-G neo-expression on tumors has been recently described in several types of malignancies.
In fact, tumor progression is tightly linked to the presence of the molecule, as it exerts its tolerogenic function, inhibiting the cells of the immune system and favoring tumor escape. Several polymorphisms in the 3'UTR region condition changes in HLA-G expression (14bp and +3142C/G, among others), which have been associated with both the development and outcome of patients with different tumor types.
Also, in recent years, several studies have shown that HLA-G plays an important role in the control of autoimmune diseases. The ability of HLA-G to limit the progression of these diseases has been confirmed and, in fact, levels of the molecule and several of its polymorphisms have been associated with increased susceptibility to the development of autoimmune diseases, as well as increased disease severity.
Thus, modulating HLA-G expression in target tissues of oncology patients or patients with autoimmune diseases may be potential therapeutic approaches to treat these pathological conditions.
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