Picture of Gerhard Wagner

Gerhard Wagner, Ph.D.

Elkan Blout Professor of Biological Chemistry and Molecular Pharmacology

Our research is concerned with structures of proteins and protein complexes and their functional roles. We use NMR spectroscopy, other biophysical techniques, computational tools and small molecule inhibitors to reveal mechanisms and cellular significance of protein interactions.

The primary structural focus is on how eukaryotic translation initiation regulates the fate of cells. In particular, we are interested in the interaction of the cap-binding proteins eIF4E with the mRNA cap, the scaffold protein eIF4G, and the regulatory 4E-BPs, and how these interactions are related to cell transformation and apoptosis. To address this, we have identified small-molecule inhibitors of the eIF4E/eIF4G interaction and found that these may have anti-tumor activity. We are also interested in interactions of other eukaryotic initiation factors including eIF4G, eIF4A, eIF4B, eIF3, and in identifying  small-molecule inhibitors as potential therapeutic agents.

We also seek to understand mechanisms of T-cell function from structural studies. This includes the abTCR and the associated CD3 complexes. In addition, we try to understand mechanisms of downstream signaling at the level of nuclear translocation of nuclear factor of activated T cells (NFAT) through de-phosphorylation by calcineurin.

We are interested in protein-protein interactions in apoptosis. These include molecules from the Bcl-2 family and the mitochondrial membrane protein VDAC, and proteins that interact with VDAC. Recently we have developed procedures for incorporating membrane proteins in covalently circularized phospholipid nanodiscs creating stable membrane protein preparations usable for numerous membrane protein studies and membrane protein complexes.

Address: 

Room C1-112

240 Longwood Avenue

Boston, MA 02115

Publications View
Solution Structure of the Cuz1 AN1 Zinc Finger Domain: An Exposed LDFLP Motif Defines a Subfamily of AN1 Proteins.
Authors: Authors: Sun ZJ, Bhanu MK, Allan MG, Arthanari H, Wagner G, Hanna J.
PLoS One
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Nitrogen detected TROSY at high field yields high resolution and sensitivity for protein NMR.
Authors: Authors: Takeuchi K, Arthanari H, Shimada I, Wagner G.
J Biomol NMR
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NMR studies reveal a novel grab and release mechanism for efficient catalysis of the bacterial 2-Cys peroxiredoxin machinery.
Authors: Authors: Nartey W, Basak S, Kamariah N, Manimekalai MS, Robson S, Wagner G, Eisenhaber B, Eisenhaber F, Grüber G.
FEBS J
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Controlled Co-reconstitution of Multiple Membrane Proteins in Lipid Bilayer Nanodiscs Using DNA as a Scaffold.
Authors: Authors: Raschle T, Lin C, Jungmann R, Shih WM, Wagner G.
ACS Chem Biol
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Structure of a CGI-58 motif provides the molecular basis of lipid droplet anchoring.
Authors: Authors: Boeszoermenyi A, Nagy HM, Arthanari H, Pillip CJ, Lindermuth H, Luna RE, Wagner G, Zechner R, Zangger K, Oberer M.
J Biol Chem
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The membrane anchor of the transcriptional activator SREBP is characterized by intrinsic conformational flexibility.
Authors: Authors: Linser R, Salvi N, Briones R, Rovó P, de Groot BL, Wagner G.
Proc Natl Acad Sci U S A
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Molecular mechanism of the dual activity of 4EGI-1: Dissociating eIF4G from eIF4E but stabilizing the binding of unphosphorylated 4E-BP1.
Authors: Authors: Sekiyama N, Arthanari H, Papadopoulos E, Rodriguez-Mias RA, Wagner G, Léger-Abraham M.
Proc Natl Acad Sci U S A
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Structure of a herpesvirus nuclear egress complex subunit reveals an interaction groove that is essential for viral replication.
Authors: Authors: Leigh KE, Sharma M, Mansueto MS, Boeszoermenyi A, Filman DJ, Hogle JM, Wagner G, Coen DM, Arthanari H.
Proc Natl Acad Sci U S A
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An RNA-binding Protein, Lin28, Recognizes and Remodels G-quartets in the MicroRNAs (miRNAs) and mRNAs It Regulates.
Authors: Authors: O'Day E, Le MT, Imai S, Tan SM, Kirchner R, Arthanari H, Hofmann O, Wagner G, Lieberman J.
J Biol Chem
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Pre-TCR ligand binding impacts thymocyte development before aßTCR expression.
Authors: Authors: Mallis RJ, Bai K, Arthanari H, Hussey RE, Handley M, Li Z, Chingozha L, Duke-Cohan JS, Lu H, Wang JH, Zhu C, Wagner G, Reinherz EL.
Proc Natl Acad Sci U S A
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