Lebedeva M I, Fields B A, Spits H, Panchamoorthy G, Brenner M B, Mariuzza R A
Center for Advanced Research in Biotechnology, University of Maryland Biotechnology Institute, Rockville 20850, USA.
Protein Sci. 1996 Dec;5(12):2638-42. doi: 10.1002/pro.5560051226.
T-lymphocytes recognize a wide variety of antigens through highly diverse cell-surface glycoproteins known as T-cell receptors (TCRs). These disulfide-linked heterodimers are composed of alpha and beta or gamma and delta polypeptide chains consisting of variable (V) and constant (C) domains non-covalently associated with at least four invariant chains to form the TCR-CD3 complex. It is well established that alpha beta TCRs recognize antigen in the form of peptides bound to molecules of the major histocompatibility complex (MHC); furthermore, information on the three-dimensional structure of alpha beta TCRs has recently become available through X-ray crystallography. In contrast, the antigen specificity of gamma delta TCRs is much less well understood and their three-dimensional structure is unknown. We have cloned the delta chain of a human TCR specific for the MHC class I HLA-A2 molecule and expressed the V domain as a secreted protein in the periplasmic space of Escherichia coli. Following affinity purification using a nickel chelate adsorbent, the recombinant V delta domain was crystallized in a form suitable for X-ray diffraction analysis. The crystals are orthorhombic, space group P2(1)2(1)2 with unit cell dimensions a = 69.9, b = 49.0, c = 61.6 A. and diffract to beyond 2.3 A resolution. The ability of a V delta domain produced in bacteria to form well-ordered crystals strongly suggests that the periplasmic space can provide a suitable environment for the correct in vivo folding of gamma delta TCRs.
T淋巴细胞通过被称为T细胞受体(TCR)的高度多样化的细胞表面糖蛋白识别多种抗原。这些二硫键连接的异二聚体由α和β或γ和δ多肽链组成,这些多肽链由可变(V)结构域和恒定(C)结构域组成,它们与至少四条恒定链非共价结合形成TCR-CD3复合物。众所周知,αβTCR以与主要组织相容性复合体(MHC)分子结合的肽的形式识别抗原;此外,最近通过X射线晶体学已经获得了αβTCR三维结构的信息。相比之下,γδTCR的抗原特异性了解得要少得多,其三维结构也未知。我们克隆了对MHC I类HLA-A2分子特异的人TCR的δ链,并将V结构域作为分泌蛋白在大肠杆菌的周质空间中表达。使用镍螯合吸附剂进行亲和纯化后,重组Vδ结构域以适合X射线衍射分析的形式结晶。晶体为正交晶系,空间群P2(1)2(1)2,晶胞参数a = 69.9,b = 49.0,c = 61.6 Å,衍射分辨率超过2.3 Å。细菌中产生的Vδ结构域形成有序晶体的能力强烈表明,周质空间可以为γδTCR在体内的正确折叠提供合适的环境。