Marcia Goldberg
Affiliations: | Harvard University, Cambridge, MA, United States |
Area:
Microbiology BiologyGoogle:
"Marcia Goldberg"Children
Sign in to add traineeNoel J. Sauer | grad student | 2006 | Harvard |
Yiuka Leung | grad student | 2008 | Harvard |
Kathryn R. Fixen | grad student | 2009 | Harvard |
Jason E. Heindl | grad student | 2010 | Harvard |
Desiree C. Yang | grad student | 2012 | Harvard |
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Publications
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Chen P, Goldberg MB. (2022) Recent insights into type-3 secretion system injectisome structure and mechanism of human enteric pathogens. Current Opinion in Microbiology. 71: 102232 |
Wood TE, Westervelt KA, Yoon JM, et al. (2022) The Spp. Type III Effector Protein OspB Is a Cysteine Protease. Mbio. e0127022 |
Chen P, Russo BC, Duncan-Lowey JK, et al. (2021) Topology and Contribution to the Pore Channel Lining of Plasma Membrane-Embedded Shigella flexneri Type 3 Secretion Translocase IpaB. Mbio. 12: e0302121 |
Russo BC, Duncan-Lowey JK, Chen P, et al. (2021) The type 3 secretion system requires actin polymerization to open translocon pores. Plos Pathogens. 17: e1009932 |
Duncan-Lowey JK, Wiscovitch AL, Wood TE, et al. (2020) Shigella flexneri Disruption of Cellular Tension Promotes Intercellular Spread. Cell Reports. 33: 108409 |
Kutsch M, Sistemich L, Lesser CF, et al. (2020) Direct binding of polymeric GBP1 to LPS disrupts bacterial cell envelope functions. The Embo Journal. e104926 |
Russo BC, Duncan JK, Wiscovitch AL, et al. (2019) Activation of Shigella flexneri type 3 secretion requires a host-induced conformational change to the translocon pore. Plos Pathogens. 15: e1007928 |
Russo BC, Duncan JK, Goldberg MB. (2019) Topological Analysis of the Type 3 Secretion System Translocon Pore Protein IpaC following Its Native Delivery to the Plasma Membrane during Infection. Mbio. 10 |
Miller KA, Garza-Mayers AC, Leung Y, et al. (2018) Identification of interactions among host and bacterial proteins and evaluation of their role early during Shigella flexneri infection. Microbiology (Reading, England) |
Russo BC, Stamm LM, Raaben M, et al. (2016) Intermediate filaments enable pathogen docking to trigger type 3 effector translocation. Nature Microbiology. 1: 16025 |