Functional consequences of genetic polymorphisms in the NKG2D receptor signaling pathway and putative gene interactions

Antje Isernhagen, D. Malzahn, S. Monecke, D. Schilling, P. Shah, G. Multhoff, G. Wulf, D. Kube, H. Bickeböller, R. Dressel
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引用次数: 5

Abstract

NKG2D (NK group 2, member D) is an activating natural killer (NK) receptor, which is expressed on NK and CD8 + T cells. On NK cells, NKG2D elicits cytotoxicity and release of cytokines. On CD8 + T cells, it functions as a co-stimulatory molecule. The receptor recognizes several ligands including the major histocompatibility complex (MHC) class I chain-related molecules A (MICA) and B (MICB) as well as the UL16-binding proteins (ULBP). The diversity of NKG2D ligands is further increased by a high degree of genetic variability of the ligands. Recently, an amino acid exchange from valine to methionine at position 129 in MICA has been found to be associated with the outcome of allogeneic hematopoietic stem cell transplantation (HSCT), and the functional consequences of this specific genetic variation have been elucidated. The clinical associations found after HSCT were explainable by the functional differences of the MICA-129 variants. Herein, we discuss how the genetic polymorphisms of NKG2D ligands and NKG2D itself interact and may affect the outcome of HSCT and the susceptibility to other diseases, which have been associated with polymorphisms in the NKG2D signaling pathway.
NKG2D受体信号通路遗传多态性的功能后果和假定的基因相互作用
NKG2D (NK group 2,成员D)是一种活化的自然杀伤(NK)受体,在NK细胞和CD8 + T细胞上表达。在NK细胞上,NKG2D引起细胞毒性和细胞因子的释放。在CD8 + T细胞上,它作为一种共刺激分子发挥作用。该受体识别多种配体,包括主要组织相容性复合体(MHC) I类链相关分子A (MICA)和B (MICB)以及ul16结合蛋白(ULBP)。NKG2D配体的高度遗传变异性进一步增加了其多样性。最近,研究发现MICA中129位氨基酸从缬氨酸到蛋氨酸的交换与异体造血干细胞移植(HSCT)的结果有关,并且已经阐明了这种特定遗传变异的功能后果。HSCT后发现的临床关联可以用MICA-129变异的功能差异来解释。在本文中,我们讨论了NKG2D配体的遗传多态性与NKG2D本身如何相互作用,并可能影响HSCT的结果和对其他疾病的易感性,这些都与NKG2D信号通路的多态性有关。
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