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The structural basis for autonomous dimerization of the pre-T-cell antigen receptor.
Pang, Siew Siew; Berry, Richard; Chen, Zhenjun; Kjer-Nielsen, Lars; Perugini, Matthew A; King, Glenn F; Wang, Christina; Chew, Sock Hui; La Gruta, Nicole L; Williams, Neal K; Beddoe, Travis; Tiganis, Tony; Cowieson, Nathan P; Godfrey, Dale I; Purcell, Anthony W; Wilce, Matthew C J; McCluskey, James; Rossjohn, Jamie.
Affiliation
  • Pang SS; The Protein Crystallography Unit, Department of Biochemistry and Molecular Biology, School of Biomedical Sciences, Monash University, Clayton, Victoria 3800, Australia.
Nature ; 467(7317): 844-8, 2010 Oct 14.
Article in En | MEDLINE | ID: mdl-20944746
The pre-T-cell antigen receptor (pre-TCR), expressed by immature thymocytes, has a pivotal role in early T-cell development, including TCR ß-selection, survival and proliferation of CD4(-)CD8(-) double-negative thymocytes, and subsequent αß T-cell lineage differentiation. Whereas αßTCR ligation by the peptide-loaded major histocompatibility complex initiates T-cell signalling, pre-TCR-induced signalling occurs by means of a ligand-independent dimerization event. The pre-TCR comprises an invariant α-chain (pre-Tα) that pairs with any TCR ß-chain (TCRß) following successful TCR ß-gene rearrangement. Here we provide the basis of pre-Tα-TCRß assembly and pre-TCR dimerization. The pre-Tα chain comprised a single immunoglobulin-like domain that is structurally distinct from the constant (C) domain of the TCR α-chain; nevertheless, the mode of association between pre-Tα and TCRß mirrored that mediated by the Cα-Cß domains of the αßTCR. The pre-TCR had a propensity to dimerize in solution, and the molecular envelope of the pre-TCR dimer correlated well with the observed head-to-tail pre-TCR dimer. This mode of pre-TCR dimerization enabled the pre-Tα domain to interact with the variable (V) ß domain through residues that are highly conserved across the Vß and joining (J) ß gene families, thus mimicking the interactions at the core of the αßTCR's Vα-Vß interface. Disruption of this pre-Tα-Vß dimer interface abrogated pre-TCR dimerization in solution and impaired pre-TCR expression on the cell surface. Accordingly, we provide a mechanism of pre-TCR self-association that allows the pre-Tα chain to simultaneously 'sample' the correct folding of both the V and C domains of any TCR ß-chain, regardless of its ultimate specificity, which represents a critical checkpoint in T-cell development. This unusual dual-chaperone-like sensing function of pre-Tα represents a unique mechanism in nature whereby developmental quality control regulates the expression and signalling of an integral membrane receptor complex.
Subject(s)

Full text: 1 Database: MEDLINE Main subject: Receptors, Antigen, T-Cell / Protein Multimerization Type of study: Prognostic_studies Limits: Humans Language: En Journal: Nature Year: 2010 Type: Article Affiliation country: Australia

Full text: 1 Database: MEDLINE Main subject: Receptors, Antigen, T-Cell / Protein Multimerization Type of study: Prognostic_studies Limits: Humans Language: En Journal: Nature Year: 2010 Type: Article Affiliation country: Australia