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Author
- Bitra, Aruna3
- Doukov, Tzanko3
- Croft, Michael2
- Peters, Bjoern2
- Wang, Jing2
- Andreatta, Massimo1
- Benedict, Chris A1
- Crotty, Shane1
- Crowe, James E Jr1
- Gilchuk, Iuliia M1
- Hildebrand, William1
- Hsieh-Wilson, Linda C1
- Hupfer, Matthias1
- Kaever, Thomas1
- Kaever, Tom1
- Ley, Klaus1
- Matho, Michael H1
- McMurtrey, Curtis1
- Meng, Xiangzhi1
- Mikulski, Zbigniew1
- Miller, Greg1
- Nielsen, Morten1
- Picarda, Gaelle1
- Remesh, Soumya G1
Keyword
- X-ray crystallography3
- cell surface receptor2
- protein crystallization2
- protein-protein interaction2
- recombinant protein expression2
- tumor necrosis factor (TNF)2
- antibody1
- antigen presentation1
- galectin1
- glycosaminoglycan1
- major histocompatibility complex (MHC)1
- N-linked glycosylation1
- natural killer cells (NK cells)1
- peptide interaction1
- site-directed mutagenesis1
- surface plasmon resonance (SPR)1
- T-cell receptor (TCR)1
- Toxoplasma gondii1
- vaccine1
- viral protein1
Protein Structure and Folding
4 Results
- Protein Structure and FoldingOpen Access
Crystal structures of the human 4-1BB receptor bound to its ligand 4-1BBL reveal covalent receptor dimerization as a potential signaling amplifier
Journal of Biological ChemistryVol. 293Issue 26p9958–9969Published online: May 2, 2018- Aruna Bitra
- Tzanko Doukov
- Michael Croft
- Dirk M. Zajonc
Cited in Scopus: 19Human (h)4-1BB (TNFRSF9 or CD137) is an inducible tumor necrosis factor receptor (TNFR) superfamily member that interacts with its cognate ligand h4-1BBL to promote T lymphocyte activation and proliferation. h4-1BB is currently being targeted with agonists in cancer immunotherapy. Here, we determined the crystal structures of unbound h4-1BBL and both WT h4-1BB and a dimerization-deficient h4-1BB mutant (C121S) in complex with h4-1BBL at resolutions between 2.7 and 3.2 Å. We observed that the structural arrangement of 4-1BBL, both unbound and in the complex, represents the canonical bell shape as seen in other similar TNF proteins and differs from the previously reported three-bladed propeller structure of 4-1BBL. - Protein Structure and FoldingOpen Access
Crystal structure of murine 4-1BB and its interaction with 4-1BBL support a role for galectin-9 in 4-1BB signaling
Journal of Biological ChemistryVol. 293Issue 4p1317–1329Published online: December 14, 2017- Aruna Bitra
- Tzanko Doukov
- Jing Wang
- Gaelle Picarda
- Chris A. Benedict
- Michael Croft
- and others
Cited in Scopus: 254-1BB (CD137) is a TNF receptor superfamily (TNFRSF) member that is thought to undergo receptor trimerization upon binding to its trimeric TNF superfamily ligand (4-1BBL) to stimulate immune responses. 4-1BB also can bind to the tandem repeat–type lectin galectin-9 (Gal-9), and signaling through mouse (m)4-1BB is reduced in galectin-9 (Gal-9)–deficient mice, suggesting a pivotal role of Gal-9 in m4-1BB activation. Here, using sulfur-SAD phasing, we determined the crystal structure of m4-1BB to 2.2-Å resolution. - ImmunologyOpen Access
Structure–function characterization of three human antibodies targeting the vaccinia virus adhesion molecule D8
Journal of Biological ChemistryVol. 293Issue 1p390–401Published online: November 9, 2017- Michael H. Matho
- Andrew Schlossman
- Iuliia M. Gilchuk
- Greg Miller
- Zbigniew Mikulski
- Matthias Hupfer
- and others
Cited in Scopus: 7Vaccinia virus (VACV) envelope protein D8 is one of three glycosaminoglycan adhesion molecules and binds to the linear polysaccharide chondroitin sulfate (CS). D8 is also a target for neutralizing antibody responses that are elicited by the smallpox vaccine, which has enabled the first eradication of a human viral pathogen and is a useful model for studying antibody responses. However, to date, VACV epitopes targeted by human antibodies have not been characterized at atomic resolution. Here, we characterized the binding properties of several human anti-D8 antibodies and determined the crystal structures of three VACV-mAb variants, VACV-66, VACV-138, and VACV-304, separately bound to D8. - Protein Structure and FoldingOpen Access
Unconventional Peptide Presentation by Major Histocompatibility Complex (MHC) Class I Allele HLA-A*02:01: BREAKING CONFINEMENT
Journal of Biological ChemistryVol. 292Issue 13p5262–5270Published online: February 8, 2017- Soumya G. Remesh
- Massimo Andreatta
- Ge Ying
- Thomas Kaever
- Morten Nielsen
- Curtis McMurtrey
- and others
Cited in Scopus: 41Peptide antigen presentation by major histocompatibility complex (MHC) class I proteins initiates CD8+ T cell-mediated immunity against pathogens and cancers. MHC I molecules typically bind peptides with 9 amino acids in length with both ends tucked inside the major A and F binding pockets. It has been known for a while that longer peptides can also bind by either bulging out of the groove in the middle of the peptide or by binding in a zigzag fashion inside the groove. In a recent study, we identified an alternative binding conformation of naturally occurring peptides from Toxoplasma gondii bound by HLA-A*02:01.