Immunobiology Group, CIBBIM-Nanomedicine Program, Hospital Universitari Vall d'Hebrón, Institut de Recerca, Universitat Autònoma de Barcelona, Barcelona 08035, Spain; Networking Research Center on Bioengineering, Biomaterials, and Nanomedicine, Instituto de Salud Carlos III, Barcelona 08035, Spain.
Immunobiology Group, CIBBIM-Nanomedicine Program, Hospital Universitari Vall d'Hebrón, Institut de Recerca, Universitat Autònoma de Barcelona, Barcelona 08035, Spain; Networking Research Center on Bioengineering, Biomaterials, and Nanomedicine, Instituto de Salud Carlos III, Barcelona 08035, Spain,.
J Biol Chem. 2012 Mar 23;287(13):9682-9693. doi: 10.1074/jbc.M111.279224. Epub 2012 Jan 30.
Herein we present the cloning and molecular characterization of CD300d, a member of the human CD300 family of immune receptors. CD300d cDNA was cloned from RNA obtained from human peripheral blood mononuclear cells, and RT-PCR revealed the gene to be expressed in cells of myeloid lineage. The cloned cDNA encoded for a type I protein with a single extracellular Ig V-type domain and a predicted molecular mass of 21.5 kDa. The short cytoplasmic tail is lacking in any known signaling motif, but there is a negatively charged residue (glutamic acid) within the transmembrane domain. CD300d forms complexes with the CD300 family members, with the exception of CD300c. Contrary to other activating members of the CD300 family of receptors, surface expression of CD300d in COS-7-transfected cells required the presence of an immunoreceptor tyrosine-based activating motif-bearing adaptor (FcεRγ). Accordingly, we found that CD300d was able to recruit FcεRγ. Unexpectedly, we could not detect CD300d on the surface of cells expressing FcεRγ, suggesting the existence of unknown mechanisms regulating the trafficking of this molecule. The presence of other CD300 molecules also did not modify the intracellular expression of CD300d. In fact, the presence of CD300d decreased the levels of surface expression of CD300f but not CD300c. Our data suggest that the function of CD300d would be related to the regulation of the expression of other CD300 molecules and the composition of CD300 complexes on the cell surface.
在此,我们介绍了 CD300d 的克隆和分子特征,CD300d 是人类 CD300 家族免疫受体的成员之一。从人外周血单核细胞获得的 RNA 中克隆出 CD300d cDNA,RT-PCR 显示该基因在髓系细胞中表达。克隆的 cDNA 编码一种 I 型蛋白,具有单个细胞外 Ig V 型结构域和预测的 21.5 kDa 分子质量。短的细胞质尾巴缺乏任何已知的信号基序,但在跨膜结构域内存在带负电荷的残基(谷氨酸)。CD300d 与 CD300 家族成员形成复合物,但与 CD300c 除外。与 CD300 家族的其他激活成员相反,CD300d 在 COS-7 转染细胞中的表面表达需要具有免疫受体酪氨酸基激活基序(ITAM)的衔接子(FcεRγ)的存在。因此,我们发现 CD300d 能够募集 FcεRγ。出乎意料的是,我们无法在表达 FcεRγ的细胞表面检测到 CD300d,这表明存在调节该分子运输的未知机制。其他 CD300 分子的存在也不会改变 CD300d 的细胞内表达。实际上,CD300d 的存在降低了 CD300f 的表面表达水平,但不影响 CD300c。我们的数据表明,CD300d 的功能可能与其他 CD300 分子的表达调控以及细胞表面 CD300 复合物的组成有关。