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Cutting an NKG2D Ligand Short: Cellular Processing of the Peculiar Human NKG2D Ligand ULBP4

机译:缩短NKG2D配体的短切:特殊人类NKG2D配体ULBP4的细胞加工

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摘要

Stress-induced cell surface expression of MHC class I-related glycoproteins of the MIC and ULBP families allows for immune recognition of dangerous “self cells” by human cytotoxic lymphocytes via the NKG2D receptor. With two MIC molecules (MICA and MICB) and six ULBP molecules (ULBP1–6), there are a total of eight human NKG2D ligands (NKG2DL). Since the discovery of the NKG2D–NKG2DL system, the cause for both redundancy and diversity of NKG2DL has been a major and ongoing matter of debate. NKG2DL diversity has been attributed, among others, to the selective pressure by viral immunoevasins, to diverse regulation of expression, to differential tissue expression as well as to variations in receptor interactions. Here, we critically review the current state of knowledge on the poorly studied human NKG2DL ULBP4. Summarizing available facts and previous studies, we picture ULBP4 as a peculiar ULBP family member distinct from other ULBP family members by various aspects. In addition, we provide novel experimental evidence suggesting that cellular processing gives rise to mature ULBP4 glycoproteins different to previous reports. Finally, we report on the proteolytic release of soluble ULBP4 and discuss these results in the light of known mechanisms for generation of soluble NKG2DL.
机译:应力诱导的MIC和ULBP家族MHC I类相关糖蛋白的细胞表面表达可通过NKG2D受体对人细胞毒性淋巴细胞进行免疫识别危险的“自身细胞”。有两个MIC分子(MICA和MICB)和六个ULBP分子(ULBP1-6),总共有八个人类NKG2D配体(NKG2DL)。自从NKG2D–NKG2DL系统被发现以来,NKG2DL冗余和多样性的原因一直是争论的主要和持续的问题。 NKG2DL的多样性主要归因于病毒免疫evasin的选择性压力,表达的多种调节,差异的组织表达以及受体相互作用的变化。在这里,我们批判性地回顾了关于研究不足的人类NKG2DL ULBP4的当前知识状态。总结现有事实和先前的研究,我们将ULBP4描绘为独特的ULBP家族成员,在各个方面与其他ULBP家族成员截然不同。此外,我们提供了新的实验证据,表明细胞加工产生了不同于先前报道的成熟ULBP4糖蛋白。最后,我们报告了可溶性ULBP4的蛋白水解释放,并根据生成可溶性NKG2DL的已知机制讨论了这些结果。

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