Picture of Donald Coen

Donald Mark Coen, Ph.D.

Professor of Biological Chemistry and Molecular Pharmacology

Our laboratory takes molecular approaches to herpesvirus replication and latency. Current projects focus on the biogenesis, mechanisms of repression, and biological roles of viral microRNAs during HSV infection.

Research:

Our laboratory takes molecular approaches to herpesvirus replication and latency.  These studies provide excellent models for biological processes in eukaryotic cells and, because herpesviruses such as herpes simplex virus (HSV) and human cytomegalovirus (HCMV) are important pathogens, to exploit differences between herpesvirus and cellular processes for safe and effective antiviral therapy.   Areas of research include:

Novel post-transcriptional regulatory mechanisms.  Current projects focus on the biogenesis, mechanisms of repression, and biological roles of viral microRNAs during HSV infection.

Herpesvirus DNA replication proteins:  Projects include determining the 3-D structures of these proteins (with the Hogle lab), and the roles of poorly understood structural domains, and exploring their interactions with each other, cellular proteins, and nucleic acids via biochemical, mutational, and biophysical approaches, including (with the Loparo and Golan labs) single molecule methods.   These studies should permit detailed understanding of these complicated proteins and rational drug design.

Nuclear egress:  How do HCMV nucleocapsids move towards and gain access to the inner nuclear membrane, and bud through it?  Projects include biochemical and biophysical studies of a viral enzyme that mimics cyclin-dependent kinase and of a nuclear egress complex (in collaboration with the Hogle lab), and molecular genetic and cell biological studies of these proteins' functions in infected cells.

Drug targets and development of new therapies.   Aside from studies of established drug targets (herpesvirus DNA polymerases and the HCMV protein kinase), projects include discovering new antiviral drugs that inhibit protein-protein interactions, and finding new drug targets by a combination of "chemical genetic" and molecular genetic approaches.

HSV latency/pathogenesis.  HSV forms latent infections that persist for the life of the host.  How this occurs is biologically fascinating and clinically important.  Projects entail molecular genetic, and PCR-basedmethods to explore viral gene regulation especially how viral and host microRNAs repress viral gene expression, thereby maintaining latency.

Address: 

Room SGM - 304

250 Longwood Avenue

Boston, MA 02115

Publications View
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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Human cytomegalovirus UL97 phosphorylates the viral nuclear egress complex.
Authors: Authors: Sharma M, Bender BJ, Kamil JP, Lye MF, Pesola JM, Reim NI, Hogle JM, Coen DM.
J Virol
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Mechanism of ganciclovir-induced chain termination revealed by resistant viral polymerase mutants with reduced exonuclease activity.
Authors: Authors: Chen H, Beardsley GP, Coen DM.
Proc Natl Acad Sci U S A
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Dynamic and nucleolin-dependent localization of human cytomegalovirus UL84 to the periphery of viral replication compartments and nucleoli.
Authors: Authors: Bender BJ, Coen DM, Strang BL.
J Virol
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Comparison of effects of inhibitors of viral and cellular protein kinases on human cytomegalovirus disruption of nuclear lamina and nuclear egress.
Authors: Authors: Sharma M, Coen DM.
J Virol
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HIV integrase inhibitors block replication of alpha-, beta-, and gammaherpesviruses.
Authors: Authors: Yan Z, Bryant KF, Gregory SM, Angelova M, Dreyfus DH, Zhao XZ, Coen DM, Burke TR, Knipe DM.
MBio
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A neuron-specific host microRNA targets herpes simplex virus-1 ICP0 expression and promotes latency.
Authors: Authors: Pan D, Flores O, Umbach JL, Pesola JM, Bentley P, Rosato PC, Leib DA, Cullen BR, Coen DM.
Cell Host Microbe
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Roles of conserved residues within the pre-NH2-terminal domain of herpes simplex virus 1 DNA polymerase in replication and latency in mice.
Authors: Authors: Terrell SL, Pesola JM, Coen DM.
J Gen Virol
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Common and new acyclovir resistant herpes simplex virus-1 mutants causing bilateral recurrent herpetic keratitis in an immunocompetent patient.
Authors: Authors: Pan D, Kaye SB, Hopkins M, Kirwan R, Hart IJ, Coen DM.
J Infect Dis
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Expression of herpes simplex virus 1 microRNAs in cell culture models of quiescent and latent infection.
Authors: Authors: Jurak I, Hackenberg M, Kim JY, Pesola JM, Everett RD, Preston CM, Wilson AC, Coen DM.
J Virol
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