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Author Details

Carol A Gross
University of California san francisco
1968
191
83
Andrej Sali (CM4AI)
PMIDPaper TitleJournal TitlePublished Year
36712119Three bacterial DedA subfamilies with distinct functions and phylogenetic distribution.bioRxiv2023
37341958Takashi Yura: pioneer, visionary scientist, friend.Cell Stress Chaperones2023
36856409Three Bacterial DedA Subfamilies with Distinct Functions and Phylogenetic Distribution.mBio2023
35064089The context of the ribosome binding site in mRNAs defines specificity of action of kasugamycin, an inhibitor of translation initiation.Proc Natl Acad Sci U S A2022
36069446Fatty Acid Synthesis Knockdown Promotes Biofilm Wrinkling and Inhibits Sporulation in Bacillus subtilis.mBio2022
35073755Ceragenins and Antimicrobial Peptides Kill Bacteria through Distinct Mechanisms.mBio2022
33285498Bacterial CRISPR screens for gene function.Curr Opin Microbiol2021
33594973Three-dimensional biofilm colony growth supports a mutualism involving matrix and nutrient sharing.Elife2021
34530639Cold Shock Response in Bacteria.Annu Rev Genet2021
34634934Morphological and Transcriptional Responses to CRISPRi Knockdown of Essential Genes in Escherichia coli.mBio2021
34019789Chemical-genetic interrogation of RNA polymerase mutants reveals structure-function relationships and physiological tradeoffs.Mol Cell2021
34027480Computational pipeline for designing guide RNAs for mismatch-CRISPRi.STAR Protoc2021
32743959Resistance to serine in Bacillus subtilis: identification of the serine transporter YbeC and of a metabolic network that links serine and threonine metabolism.Environ Microbiol2020
31932729Titrating gene expression using libraries of systematically attenuated CRISPR guide RNAs.Nat Biotechnol2020
33080209Mismatch-CRISPRi Reveals the Co-varying Expression-Fitness Relationships of Essential Genes in Escherichia coli and Bacillus subtilis.Cell Syst2020
33303586Genetic interaction mapping informs integrative structure determination of protein complexes.Science2020
33318184Rewiring the specificity of extracytoplasmic function sigma factors.Proc Natl Acad Sci U S A2020
30957856Topoisomerase IV can functionally replace all type 1A topoisomerases in Bacillus subtilis.Nucleic Acids Res2019
31115926Discovery of the extracytoplasmic function Ï¿ factors.Mol Microbiol2019
29043783Marine Mammal Microbiota Yields Novel Antibiotic with Potent Activity Against Clostridium difficile.ACS Infect Dis2018
29771498Structure and Function of the Transmembrane Domain of NsaS, an Antibiotic Sensing Histidine Kinase in Staphylococcus aureus.J Am Chem Soc2018
29628307A Stress Response that Monitors and Regulates mRNA Structure Is Central to Cold Shock Adaptation.Mol Cell2018
28829964Ribosomal Architecture: Constraints Imposed by the Need for Self-Production.Curr Biol2017
28139975Operon mRNAs are organized into ORF-centric structures that predict translation efficiency.Elife2017
28301469Global analysis of translation termination in E. coli.PLoS Genet2017
28189581Construction and Analysis of Two Genome-Scale Deletion Libraries for Bacillus subtilis.Cell Syst2017
28732023Correction: A Chemical-Genomic Screen of Neglected Antibiotics Reveals Illicit Transport of Kasugamycin and Blasticidin S.PLoS Genet2017
27528508Depletion of Undecaprenyl Pyrophosphate Phosphatases Disrupts Cell Envelope Biogenesis in Bacillus subtilis.J Bacteriol2016
27984733A Multiplexed Single-Cell CRISPR Screening Platform Enables Systematic Dissection of the Unfolded Protein Response.Cell2016
27780866Identification of Two Phosphate Starvation-induced Wall Teichoic Acid Hydrolases Provides First Insights into the Degradative Pathway of a Key Bacterial Cell Wall Component.J Biol Chem2016
27238023A Comprehensive, CRISPR-based Functional Analysis of Essential Genes in Bacteria.Cell2016
27355376A Chemical-Genomic Screen of Neglected Antibiotics Reveals Illicit Transport of Kasugamycin and Blasticidin S.PLoS Genet2016
25708065Editorial overview: Cell regulation: when you think you know it all, there is another layer to be discovered.Curr Opin Microbiol2015
26604313DksA regulates RNA polymerase in Escherichia coli through a network of interactions in the secondary channel that includes Sequence Insertion 1.Proc Natl Acad Sci U S A2015
26363124Bacterial CRISPR: accomplishments and prospects.Curr Opin Microbiol2015
26336012High-throughput bacterial functional genomics in the sequencing era.Curr Opin Microbiol2015
25918422MurJ and a novel lipid II flippase are required for cell wall biogenesis in Bacillus subtilis.Proc Natl Acad Sci U S A2015
25951518Coordination of peptidoglycan synthesis and outer membrane constriction during Escherichia coli cell division.Elife2015
24699085Promoter melting by an alternative Ï¿, one base at a time.Nat Struct Mol Biol2014
25002089Bacterial sigma factors: a historical, structural, and genomic perspective.Annu Rev Microbiol2014
25030700MicL, a new ϿE-dependent sRNA, combats envelope stress by repressing synthesis of Lpp, the major outer membrane lipoprotein.Genes Dev2014
24766808Quantifying absolute protein synthesis rates reveals principles underlying allocation of cellular resources.Cell2014
24789973A pause sequence enriched at translation start sites drives transcription dynamics in vivo.Science2014
24845675Stress-induced remodeling of the bacterial proteome.Curr Biol2014
23687042Dual molecular signals mediate the bacterial response to outer-membrane stress.Science2013
24358019Heat shock transcription factor Ͽ32 co-opts the signal recognition particle to regulate protein homeostasis in E. coli.PLoS Biol2013
24169405Design of orthogonal genetic switches based on a crosstalk map of Ͽs, anti-Ͽs, and promoters.Mol Syst Biol2013
22156164Predicting the strength of UP-elements and full-length E. coli ϿE promoters.Nucleic Acids Res2012
23088750Covalent intermediate in the catalytic mechanism of the radical S-adenosyl-L-methionine methyl synthase RlmN trapped by mutagenesis.J Am Chem Soc2012
22760860The crystal structure of the periplasmic domain of Vibrio parahaemolyticus CpxA.Protein Sci2012
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Collaborators

School of Pharmacy, University of Wisconsin-Madison
Co-authored papers 12
Whitehead Institute for Biomedical Research
Co-authored papers 11
University of California san francisco
Co-authored papers 9
University of California San Francisco
Co-authored papers 9
University of Wisconsin-Madison
Co-authored papers 8
Stanford University
Co-authored papers 8
Texas A&M University, College Station
Co-authored papers 7
Stanford University, Stanford University School of Medicine
Co-authored papers 7
Indian Institute of Science Education and Research (IISER) Mohali
Co-authored papers 7
University of California San Francisco
Co-authored papers 6
Texas A&M University and Texas Agrilife Research, College Station
Co-authored papers 6
Stanford University
Co-authored papers 5
University of California - San Francisco
Co-authored papers 5
The Rockefeller University
Co-authored papers 4
University of California San Francisco
Co-authored papers 3
University of California, USA Quantitative Biosciences Institute (QBI) san francisco
Co-authored papers 3
Institute of Microbiology and Infection, University of Birmingham
Co-authored papers 3
University of Wisconsin-Madison
Co-authored papers 3
Microbial Sciences Institute, Yale University
Co-authored papers 3
University of Wisconsin
Co-authored papers 3
Lawrence Berkeley National Laboratory
Co-authored papers 2
School of Public Health, Guangdong Medical University
Co-authored papers 2
Yeungnam University
Co-authored papers 2
The Hebrew University of Jerusalem
Co-authored papers 2
Swammerdam Institute for Life Sciences, University of Amsterdam
Co-authored papers 2
Department of Pharmaceutical Chemistry, University of California san francisco
Co-authored papers 2
Co-authored papers 2
Seoul National University College of Medicine, Seoul National University Hospital
Co-authored papers 2
University of California san francisco
Co-authored papers 2
Broad Institute of MIT and Harvard
Co-authored papers 2