James M. Hogle

James M. Hogle, Ph.D.

Edward S. Harkness Professor of Biological Chemistry and Molecular Pharmacology, Emeritus

Our laboratory uses structural approaches to explore how viruses enter cells and replicate.

Research:

Our laboratory uses structural approaches to explore how viruses enter cells and replicate. Current research in the laboratory is focused in two areas: 1) a multiscaled approach to characterizing the cell entry pathway of poliovirus and other simple nonenveloped viruses, 2) structural studies of key proteins in the replication of herpes viruses (in collaboration with Don Coen).

Membrane fusion provides a conceptually simple mechanism for enveloped viruses to deliver their genomes into the cytoplasm of target cells. In contrast, viruses which lack an outer membrane must provide a mechanism that allows a large nucleocapsid, or at the very least the viral genome, to cross a membrane in order to gain access to the interior of the cell. This process remains poorly understood. We are taking a combined structural approach to characterize the cell entry pathway of poliovirus as a simple model for studying nonenveloped virus entry. The combined approach uses cryoelectron microscopy to characterize soluble forms of cell entry intermediates at high resolution, and cryoelectron microscopy and cryoelectron tomography to characterize membrane-associated intermediates at intermediate resolutions, using a receptor-decorated liposome model developed in the lab.  Our cryoEM studies have benefitted greatly from the rapid advances in instrumentation and image processing in the field, and have reached a point were near-atomic resolution of well-behaved samples is becoming routine.   The structures to date have resulted in a number of surprises including the demonstration that viral peptides that are externalized and insert into membranes during infection and the viral genome are released from a site midway between a particle twofold axis and a particle fivefold axis not at the fivefold axis as previous models had proposed, and a clear demonstration that the viral RNA is released across intact membranes through a rather long tube and a pore created by the externalized viral peptides.  We are using the receptor-decorated liposome model to characterize the kinetics of RNA translocation into tethered liposomes on at the single particle level, and a combination of cross-linking and limited proteolysis to characterize the components of the tube and the pore.

Address: 

Room C-122

250 Longwood Avenue

Boston, MA 02115

Publications View
The human cytomegalovirus UL44 C clamp wraps around DNA.
Authors: Authors: Komazin-Meredith G, Petrella RJ, Santos WL, Filman DJ, Hogle JM, Verdine GL, Karplus M, Coen DM.
Structure
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Post-imaging fiducial markers aid in the orientation determination of complexes with mixed or unknown symmetry.
Authors: Authors: Bubeck D, Filman DJ, Kuzmin M, Fuller SD, Hogle JM.
J Struct Biol
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The positively charged surface of herpes simplex virus UL42 mediates DNA binding.
Authors: Authors: Komazin-Meredith G, Santos WL, Filman DJ, Hogle JM, Verdine GL, Coen DM.
J Biol Chem
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Single particle cryoelectron tomography characterization of the structure and structural variability of poliovirus-receptor-membrane complex at 30 A resolution.
Authors: Authors: Bostina M, Bubeck D, Schwartz C, Nicastro D, Filman DJ, Hogle JM.
J Struct Biol
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Imaging poliovirus entry in live cells.
Authors: Authors: Brandenburg B, Lee LY, Lakadamyali M, Rust MJ, Zhuang X, Hogle JM.
PLoS Biol
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Identification of a glycosaminoglycan binding region of the alpha C protein that mediates entry of group B Streptococci into host cells.
Authors: Authors: Baron MJ, Filman DJ, Prophete GA, Hogle JM, Madoff LC.
J Biol Chem
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Crystal structure of poliovirus 3CD protein: virally encoded protease and precursor to the RNA-dependent RNA polymerase.
Authors: Authors: Marcotte LL, Wass AB, Gohara DW, Pathak HB, Arnold JJ, Filman DJ, Cameron CE, Hogle JM.
J Virol
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Crystal structure of the cytomegalovirus DNA polymerase subunit UL44 in complex with the C terminus from the catalytic subunit. Differences in structure and function relative to unliganded UL44.
Authors: Authors: Appleton BA, Brooks J, Loregian A, Filman DJ, Coen DM, Hogle JM.
J Biol Chem
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Characterization of early steps in the poliovirus infection process: receptor-decorated liposomes induce conversion of the virus to membrane-anchored entry-intermediate particles.
Authors: Authors: Tuthill TJ, Bubeck D, Rowlands DJ, Hogle JM.
J Virol
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Multiple conformations in the ligand-binding site of the yeast nuclear pore-targeting domain of Nup116p.
Authors: Authors: Robinson MA, Park S, Sun ZY, Silver PA, Wagner G, Hogle JM.
J Biol Chem
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