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首页> 外文期刊>The journal of immunology >Alternative Splice Transcripts for MHC Class I–like MICA Encode Novel NKG2D Ligands with Agonist or Antagonist Functions
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Alternative Splice Transcripts for MHC Class I–like MICA Encode Novel NKG2D Ligands with Agonist or Antagonist Functions

机译:类似于MHC I类的MICA的替代剪接转录本编码具有激动剂或拮抗剂功能的新型NKG2D配体

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MHC class I chain–related proteins A and B (MICA and MICB) and UL16-binding proteins are ligands of the activating NKG2D receptor involved in cancer and immune surveillance of infection. Structurally, MICA/B proteins contain an α3 domain, whereas UL16-binding proteins do not. We identified novel alternative splice transcripts for MICA encoding five novel MICA isoforms: MICA-A, -B1, -B2, -C, and -D. Alternative splicing associates with MICA*015 and *017 and results from a point deletion (G) in the 5′ splice donor site of MICA intron 4 leading to exon 3 and exon 4 skipping and/or deletions. These changes delete the α3 domain in all isoforms, and the α2 domain in the majority of isoforms (A, B1, C, and D). Endothelial and hematopoietic cells contained endogenous alternative splice transcripts and isoforms. MICA-B1, -B2, and -D bound NKG2D by surface plasmon resonance and were expressed at the cell surface. Functionally, MICA-B2 contains two extracellular domains (α1 and α2) and is a novel potent agonist ligand for NKG2D. We found that MICA-D is a new truncated form of MICA with weak affinity for NKG2D despite lacking α2 and α3 domains. MICA-D may functionally impair NKG2D activation by competing with full-length MICA or MICA-B2 for NKG2D engagement. Our study established NKG2D binding for recombinant MICA-B1 but found no function for this isoform. New truncated MICA isoforms exhibit a range of functions that may drive unexpected immune mechanisms and provide new tools for immunotherapy.
机译:MHC I类链相关蛋白A和B(MICA和MICB)以及UL16结合蛋白是激活的NKG2D受体的配体,其参与癌症和感染的免疫监视。在结构上,MICA / B蛋白包含一个α3结构域,而UL16结合蛋白则没有。我们为编码5种新型MICA亚型的MICA鉴定了新颖的替代剪接转录本:MICA-A,-B1,-B2,-C和-D。备选的剪接与MICA * 015和* 017相关,并且是由MICA内含子4的5'剪接供体位点中的点缺失(G)导致的,导致外显子3和外显子4的跳跃和/或缺失。这些变化删除了所有同工型中的α3结构域,并删除了大多数同工型(A,B1,C和D)中的α2结构域。内皮细胞和造血细胞含有内源性剪接转录本和同工型。 MICA-B1,-B2和-D通过表面等离振子共振结合NKG2D,并在细胞表面表达。在功能上,MICA-B2包含两个胞外域(α1和α2),并且是NKG2D的新型有效激动剂配体。我们发现MICA-D是一种新的截短形式的MICA,尽管缺少α2和α3结构域,但对NKG2D的亲和力很弱。通过与全长MICA或MICA-B2竞争NKG2D的参与,MICA-D可能在功能上削弱NKG2D的激活。我们的研究建立了与重组MICA-B1的NKG2D结合,但未发现该同种型的功能。新的截短的MICA亚型表现出一系列功能,这些功能可能会驱动意想不到的免疫机制,并为免疫疗法提供新的工具。

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