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S Peter Howard

Showing results (1-10 of 20) with videos related to

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Research in Microbiology|April 2, 2013
Assembly of the type II secretion systemS Peter Howard
Molecular Microbiology|March 30, 2010
ExeA binds to peptidoglycan and forms a multimer for assembly of the type II secretion apparatus in Aeromonas hydrophilaGang Li, S Peter Howard
Methods in Molecular Biology (Clifton, N.J.)|July 2, 2017
In Vivo and In Vitro Protein-Peptidoglycan InteractionsGang Li, S Peter Howard
Journal of Bacteriology|September 18, 2003
In vivo evidence for TonB dimerizationAnnette Sauter, S Peter Howard, Volkmar Braun
Infection and Immunity|May 16, 2012
YghG (GspSβ) is a novel pilot protein required for localization of the GspSβ type II secretion system secretin of enterotoxigenic Escherichia coliTimothy G Strozen, Gang Li, S Peter Howard
Journal of Bacteriology|October 26, 2010
Assembly of the type II secretion system: identification of ExeA residues critical for peptidoglycan binding and secretin multimerizationGang Li, Alicia Miller, Harold Bull, et al.
Journal of Bacteriology|September 15, 2005
Adenylate cyclase mutations rescue the degP temperature-sensitive phenotype and induce the sigma E and Cpx extracytoplasmic stress regulons in Escherichia coliTimothy G Strozen, Geoffrey R Langen, S Peter Howard
Journal of Bacteriology|September 15, 2005
Purification and characterization of the N-terminal domain of ExeA: a novel ATPase involved in the type II secretion pathway of Aeromonas hydrophilaIan C Schoenhofen, Gang Li, Timothy G Strozen, et al.
Protein Science : a Publication of the Protein Society|January 23, 2010
The proline-rich domain of TonB possesses an extended polyproline II-like conformation of sufficient length to span the periplasm of Gram-negative bacteriaSilvia Domingo Köhler, Annemarie Weber, S Peter Howard, et al.
Molecular Microbiology|October 12, 2007
The solution structure of the periplasmic domain of the TonB system ExbD protein reveals an unexpected structural homology with siderophore-binding proteinsAlicia Garcia-Herrero, R Sean Peacock, S Peter Howard, et al.
Pageof 2

Showing results (1-10 of 20) with videos related to

Sort By:
Pageof 2
Research in Microbiology|April 2, 2013
Assembly of the type II secretion systemS Peter Howard
Molecular Microbiology|March 30, 2010
ExeA binds to peptidoglycan and forms a multimer for assembly of the type II secretion apparatus in Aeromonas hydrophilaGang Li, S Peter Howard
Methods in Molecular Biology (Clifton, N.J.)|July 2, 2017
In Vivo and In Vitro Protein-Peptidoglycan InteractionsGang Li, S Peter Howard
Journal of Bacteriology|September 18, 2003
In vivo evidence for TonB dimerizationAnnette Sauter, S Peter Howard, Volkmar Braun
Infection and Immunity|May 16, 2012
YghG (GspSβ) is a novel pilot protein required for localization of the GspSβ type II secretion system secretin of enterotoxigenic Escherichia coliTimothy G Strozen, Gang Li, S Peter Howard
Journal of Bacteriology|October 26, 2010
Assembly of the type II secretion system: identification of ExeA residues critical for peptidoglycan binding and secretin multimerizationGang Li, Alicia Miller, Harold Bull, et al.
Journal of Bacteriology|September 15, 2005
Adenylate cyclase mutations rescue the degP temperature-sensitive phenotype and induce the sigma E and Cpx extracytoplasmic stress regulons in Escherichia coliTimothy G Strozen, Geoffrey R Langen, S Peter Howard
Journal of Bacteriology|September 15, 2005
Purification and characterization of the N-terminal domain of ExeA: a novel ATPase involved in the type II secretion pathway of Aeromonas hydrophilaIan C Schoenhofen, Gang Li, Timothy G Strozen, et al.
Protein Science : a Publication of the Protein Society|January 23, 2010
The proline-rich domain of TonB possesses an extended polyproline II-like conformation of sufficient length to span the periplasm of Gram-negative bacteriaSilvia Domingo Köhler, Annemarie Weber, S Peter Howard, et al.
Molecular Microbiology|October 12, 2007
The solution structure of the periplasmic domain of the TonB system ExbD protein reveals an unexpected structural homology with siderophore-binding proteinsAlicia Garcia-Herrero, R Sean Peacock, S Peter Howard, et al.
Pageof 2