Gemma Atkinson

About Gemma Atkinson

Gemma Atkinson, With an exceptional h-index of 29 and a recent h-index of 26 (since 2020), a distinguished researcher at Umeå universitet, specializes in the field of Protein evolution, toxin-antitoxins, the ribosome, translation, antibiotic resistance.

His recent articles reflect a diverse array of research interests and contributions to the field:

Structural basis of Cfr-mediated antimicrobial resistance and mechanisms to evade it

Peptidyl-tRNA hydrolase is the nascent chain release factor in bacterial ribosome-associated quality control

A role for the S4-domain containing protein YlmH in ribosome-associated quality control in Bacillus subtilis

Mechanism of phage sensing and abortion by toxin-antitoxin-chaperone systems

A Comprehensive Resource for Exploring Antiphage Defense: DefenseFinder Webservice, Wiki and Databases.

Resolution of ribosomal stalling by ABCF ATPases YfmR and YkpA/YbiT

Drosocin-like peptides exhibit highly diverse antimicrobial activity and inhibit translation at two different stages

Sequence diversity and antimicrobial activity of natural homologs of the translation terminator inhibitor Apidaecin.

Gemma Atkinson Information

University

Position

Assistant Professor

Citations(all)

3739

Citations(since 2020)

2534

Cited By

2107

hIndex(all)

29

hIndex(since 2020)

26

i10Index(all)

44

i10Index(since 2020)

41

Email

University Profile Page

Google Scholar

Gemma Atkinson Skills & Research Interests

Protein evolution

toxin-antitoxins

the ribosome

translation

antibiotic resistance

Top articles of Gemma Atkinson

Structural basis of Cfr-mediated antimicrobial resistance and mechanisms to evade it

Nature Chemical Biology

2024/1/18

Peptidyl-tRNA hydrolase is the nascent chain release factor in bacterial ribosome-associated quality control

Molecular Cell

2024/1/5

A role for the S4-domain containing protein YlmH in ribosome-associated quality control in Bacillus subtilis

bioRxiv

2024

Mechanism of phage sensing and abortion by toxin-antitoxin-chaperone systems

bioRxiv

2024

A Comprehensive Resource for Exploring Antiphage Defense: DefenseFinder Webservice, Wiki and Databases.

bioRxiv

2024

Resolution of ribosomal stalling by ABCF ATPases YfmR and YkpA/YbiT

bioRxiv

2024

Drosocin-like peptides exhibit highly diverse antimicrobial activity and inhibit translation at two different stages

2023/10/12

Gemma Atkinson
Gemma Atkinson

H-Index: 19

Sequence diversity and antimicrobial activity of natural homologs of the translation terminator inhibitor Apidaecin.

2023/10/12

Gemma Atkinson
Gemma Atkinson

H-Index: 19

The native ABC-F proteins of Staphylococcus aureus do not contribute to intrinsic resistance against ribosome-targeting antibacterial drugs

Journal of Antimicrobial Chemotherapy

2023/8/16

Coupling between substrate specificity and neutralisation mechanisms in toxic Small Alarmone Synthetases

2023/8/1

Genome-encoded ABCF factors implicated in intrinsic antibiotic resistance in Gram-positive bacteria: VmlR2, Ard1 and CplR

Nucleic Acids Research

2023/5/22

uORF4u: a tool for annotation of conserved upstream open reading frames

Bioinformatics

2023/5/1

Structure of SpoT reveals evolutionary tuning of catalysis via conformational constraint

Nature chemical biology

2023/3

The structure of DarB in complex with RelNTD reveals nonribosomal activation of Rel stringent factors

Science advances

2023/1/18

The structural basis of hyperpromiscuity in a core combinatorial network of type II toxin–antitoxin and related phage defense systems

Proc Natl Acad Sci U S A.

2023/8/15

Structural basis for PoxtA-mediated resistance to phenicol and oxazolidinone antibiotics

Nature Communications

2022/4/6

Sal-type ABC-F proteins: intrinsic and common mediators of pleuromutilin resistance by target protection in staphylococci

Nucleic Acids Research

2022/2/28

The structure of SpoT reveals evolutionary tuning of enzymatic output through constraint of the conformational landscape

2022/2/11

A hyperpromiscuous antitoxin protein domain for the neutralization of diverse toxin domains

Proceedings of the National Academy of Sciences

2022/2/8

NetFlax: identification of a core combinatorial network of proteinaceous toxin-antitoxin systems in microbes

2022

See List of Professors in Gemma Atkinson University(Umeå universitet)

Co-Authors

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