Zobrazeno 1 - 4
of 4
pro vyhledávání: '"Garrett T Wong"'
Autor:
Kristen E Wong, Jacqueline Fung, Andrea Lunardi, Kerry K. Brown, Pier Paolo Pandolfi, Andrew Ivanov, Yanbo Yin, Markus Reschke, Garrett T Wong, Nikolaos A. Patsopoulos, Robin E. Williamson, Ann E. Hickox, Sabina Signoretti, Kathleen S. Arnos, M. Charles Liberman, Ming Chen, Maura Bríd Cotter, Cynthia C. Morton, Nicholas A Sinnott-Armstrong, Tammy Kammin, Richard C Sallari, Benjamin Currall, Jun Shen, Nahid G. Robertson, Kathryn L. Penney, Cinthya J. Zepeda-Mendoza, Bradley J. Quade, Manolis Kellis, Alexander S. Banks
Publikováno v:
Human Molecular Genetics. 27:4194-4203
Great strides in gene discovery have been made using a multitude of methods to associate phenotypes with genetic variants, but there still remains a substantial gap between observed symptoms and identified genetic defects. Herein, we use the converge
Autor:
Joseph T. Wade, Moira Dillon, Carla J. Becker, Ciaran Evans, Lauren M. Shull, Johanna Hardin, Richard P. Bonocora, Anna J. Lee Fong, Lakshmi E. Batachari, Daniel M. Stoebel, Eliot C. Bush, Alicia N. Schep, Garrett T. Wong, Suzannah M. Beeler
Publikováno v:
Journal of Bacteriology. 199
The alternative sigma factor RpoS is a central regulator of many stress responses in Escherichia coli . The level of functional RpoS differs depending on the stress. The effect of these differing concentrations of RpoS on global transcriptional respo
Autor:
Garrett T. Wong, Richard P. Bonocora, Alicia N. Schep, Suzannah M. Beeler, Anna J. Lee Fong, Lauren M. Shull, Lakshmi E. Batachari, Moira Dillon, Ciaran Evans, Carla J. Becker, Eliot C. Bush, Johanna Hardin, Joseph T. Wade, Daniel M. Stoebel
The alternative sigma factor RpoS is a central regulator of a many stress responses inEscherichia coli.The level of functional RpoS differs depending on the stress. The effect of these differing concentrations of RpoS on global transcriptional respon
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::213eb67f0ca95282f277ecdeb8c2449a
https://doi.org/10.1101/082537
https://doi.org/10.1101/082537
Autor:
Suzannah M. Beeler, Benjamin P. Oldroyd, Robert A. Drewell, Julianne Lim, Jessica L. Stringham, Eliot C. Bush, Emily J. Remnant, Garrett T. Wong
Publikováno v:
Development (Cambridge, England). 141(13)
In honey bees (Apis mellifera), the epigenetic mark of DNA methylation is central to the developmental regulation of caste differentiation, but may also be involved in additional biological functions. In this study, we examine the whole genome methyl