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Genome-wide siRNA screen reveals a new cellular partner of NK cell receptor KIR2DL4: heparan sulfate directly modulates KIR2DL4-mediated responses

机译:全基因组的siRNA筛选揭示了NK细胞受体KIR2DL4的新的细胞伴侣:硫酸乙酰肝素直接调节KIR2DL4介导的反应

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摘要

KIR2DL4 (CD158d) is a distinct member of the killer cell Ig-like receptor (KIR) family in human NK cells that can induce cytokine production and cytolytic activity in resting NK cells. Soluble HLA-G, normally expressed only by fetal-derived trophoblast cells, was reported to be a ligand for KIR2DL4; however, KIR2DL4 expression is not restricted to the placenta and can be found in CD56high subset of peripheral blood NK cells. We demonstrated that KIR2DL4 can interact with alternative ligand(s), expressed by cells of epithelial or fibroblast origin. A genome-wide high-throughput siRNA screen revealed that KIR2DL4 recognition of cells surface ligand(s) is directly regulated by heparan sulfate (HS) glucosamine 3-O-sulfotransferase 3B1 (HS3ST3B1). KIR2DL4 was found to directly interact with HS/heparin, and the D0-domain of KIR2DL4 was essential for this interaction. Accordingly, exogenous HS/heparin can regulate cytokine production by KIR2DL4-expressing NK cells and HEK293T cells (HEK293T-2DL4) and induces differential localization of KIR2DL4 to rab5+ and rab7+ endosomes, thus leading to down-regulation of cytokine production and degradation of the receptor. Furthermore, we showed that intimate interaction of syndecan-4 (SDC4) HS Proteo-Glycan (HSPG) and KIR2DL4 directly affects receptor endocytosis and membrane trafficking.
机译:KIR2DL4(CD158d)是人NK细胞中杀伤细胞Ig样受体(KIR)家族的独特成员,可诱导静止NK细胞中的细胞因子产生和细胞溶解活性。可溶性HLA-G通常仅由胎儿来源的滋养细胞表达,据报道是KIR2DL4的配体。然而,KIR2DL4的表达并不局限于胎盘,而是可以在外周血NK细胞的CD56 high 子集中发现。我们证明了KIR2DL4可以与上皮或成纤维细胞起源的细胞表达的替代配体相互作用。全基因组范围的高通量siRNA筛选显示,细胞表面配体的KIR2DL4识别直接受硫酸乙酰肝素(HS)氨基葡萄糖3-O-磺基转移酶3B1(HS3ST3B1)调控。发现KIR2DL4与HS /肝素直接相互作用,而KIR2DL4的D0结构域对此相互作用至关重要。因此,外源HS /肝素可通过表达KIR2DL4的NK细胞和HEK293T细胞(HEK293T-2DL4)调节细胞因子的产生,并诱导KIR2DL4分别定位于rab5 + 和rab7 + 内体,因此导致细胞因子产生的下调和受体的降解。此外,我们表明syndecan-4(SDC4)HS蛋白聚糖(HSPG)和KIR2DL4的紧密相互作用直接影响受体的内吞作用和膜运输。

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