World's Best Scientists 2026 revealed!

D-Index & Metrics

Microbiology

D-Index
69
Citations
18524
World Ranking
2026
National Ranking
855

Overview

Sabine Ehrt is affiliated with Cornell University in the United States. Their research focuses largely on infectious diseases, particularly tuberculosis, combining expertise in medicine, biochemistry, genetics, and molecular biology.

Ehrt's main fields of study include:

  • Medicine
  • Biochemistry, Genetics and Molecular Biology

Subfields of study cover:

  • Infectious Diseases
  • Molecular Biology
  • Epidemiology
  • Immunology
  • Molecular Medicine

Their research topics are concentrated on tuberculosis and Mycobacterium, along with biochemical and molecular research, antibiotic resistance, cancer therapeutics, RNA and protein synthesis mechanisms, and enzyme structure and function:

  • Tuberculosis Research and Epidemiology
  • Mycobacterium research and diagnosis
  • Biochemical and Molecular Research
  • Antibiotic Resistance in Bacteria
  • Cancer therapeutics and mechanisms
  • RNA and protein synthesis mechanisms
  • Enzyme Structure and Function

Frequent co-authors collaborating with Ehrt include:

  • Dirk Schnappinger
  • Kyu Y. Rhee
  • Tiago Beites
  • Carolina Trujillo
  • Eric J. Rubin

Ehrt has published extensively, often appearing in journals such as:

  • bioRxiv (Cold Spring Harbor Laboratory)
  • Nature Communications
  • mBio
  • Proceedings of the National Academy of Sciences
  • Molecular Microbiology

Recent papers include:

  • Genome-wide gene expression tuning reveals diverse vulnerabilities of M. tuberculosis, 2021, Cell
  • Growth of Mycobacterium tuberculosis at acidic pH depends on lipid assimilation and is accompanied by reduced GAPDH activity, 2021, Proceedings of the National Academy of Sciences
  • Multiform antimicrobial resistance from a metabolic mutation, 2021, Science Advances
  • Peptidoglycan Hydrolases RipA and Ami1 Are Critical for Replication and Persistence of Mycobacterium tuberculosis in the Host, 2020, mBio
  • CinA mediates multidrug tolerance in Mycobacterium tuberculosis, 2022, Nature Communications

Best Publications

  • Transcriptional Adaptation of Mycobacterium tuberculosis within Macrophages Insights into the Phagosomal Environment

    Dirk Schnappinger;Sabine Ehrt;Martin I. Voskuil;Yang Liu

  • The spectrum of latent tuberculosis: rethinking the biology and intervention strategies

    Clifton E. Barry;Helena I. Boshoff;Véronique Dartois;Thomas Dick

  • Reprogramming of the Macrophage Transcriptome in Response to Interferon-γ and Mycobacterium tuberculosis Signaling Roles of Nitric Oxide Synthase-2 and Phagocyte Oxidase

    Sabine Ehrt;Dirk Schnappinger;Stefan Bekiranov;Jorg Drenkow

  • Comprehensive Essentiality Analysis of the Mycobacterium tuberculosis Genome via Saturating Transposon Mutagenesis.

    Michael A. DeJesus;Elias R. Gerrick;Weizhen Xu;Sae Woong Park

  • The proteasome of Mycobacterium tuberculosis is required for resistance to nitric oxide.

    K. Heran Darwin;Sabine Ehrt;José Carlos Gutierrez-Ramos;Nadine Weich

  • Mycobacterial survival strategies in the phagosome: defence against host stresses

    Sabine Ehrt;Dirk Schnappinger

  • Gluconeogenic carbon flow of tricarboxylic acid cycle intermediates is critical for Mycobacterium tuberculosis to establish and maintain infection

    Joeli Marrero;Kyu Y. Rhee;Dirk Schnappinger;Kevin Pethe

  • Controlling gene expression in mycobacteria with anhydrotetracycline and Tet repressor

    Sabine Ehrt;Xinzheng V. Guo;Christopher M. Hickey;Marvin Ryou

  • A membrane protein preserves intrabacterial pH in intraphagosomal Mycobacterium tuberculosis.

    Omar H Vandal;Lynda M Pierini;Dirk Schnappinger;Carl F Nathan

  • Metabolomics of Mycobacterium tuberculosis Reveals Compartmentalized Co-Catabolism of Carbon Substrates

    Luiz Pedro S. de Carvalho;Steven M. Fischer;Joeli Marrero;Carl Nathan

  • Ancestral antibiotic resistance in Mycobacterium tuberculosis.

    Rowan P. Morris;Liem Nguyen;John Gatfield;Kevin Visconti

  • Acid resistance in Mycobacterium tuberculosis

    Omar H. Vandal;Carl F. Nathan;Sabine Ehrt

  • Genome-wide gene expression tuning reveals diverse vulnerabilities of M. tuberculosis.

    Barbara Bosch;Michael A. DeJesus;Nicholas C. Poulton;Wenzhu Zhang

  • Metabolic principles of persistence and pathogenicity in Mycobacterium tuberculosis

    Sabine Ehrt;Dirk Schnappinger;Kyu Y. Rhee

  • In vivo gene silencing identifies the Mycobacterium tuberculosis proteasome as essential for the bacteria to persist in mice

    Sheetal Gandotra;Dirk Schnappinger;Mercedes Monteleone;Wolfgang Hillen

  • Hypervirulent mutant of Mycobacterium tuberculosis resulting from disruption of the mce1 operon

    Nobuyuki Shimono;Lisa Morici;Nicola Casali;Sally Cantrell

  • Protection from Alzheimer's-like disease in the mouse by genetic ablation of inducible nitric oxide synthase.

    Carl Nathan;Noel Calingasan;Jon Nezezon;Aihao Ding

  • Recombinant Mycobacterium tuberculosis protein associated with mammalian cell entry

    Sadhana Chitale;Sabine Ehrt;Ikuo Kawamura;Takao Fujimura

  • CLONING OF THE MSPA GENE ENCODING A PORIN FROM MYCOBACTERIUM SMEGMATIS

    Michael Niederweis;Sabine Ehrt;Christian Heinz;Uta Klöcker

  • Selective killing of nonreplicating mycobacteria.

    Ruslana Bryk;Benjamin Gold;Aditya Venugopal;Jasbir Singh

Frequent Co-Authors

Dirk Schnappinger
Dirk Schnappinger Cornell University
Carl Nathan
Carl Nathan Cornell University
Kyu Y. Rhee
Kyu Y. Rhee Cornell University
Thomas R. Ioerger
Thomas R. Ioerger Texas A&M University
Lee W. Riley
Lee W. Riley University of California, Berkeley
Christopher M. Sassetti
Christopher M. Sassetti University of Massachusetts Chan Medical School
Helena I. Boshoff
Helena I. Boshoff National Institutes of Health
Clifton E. Barry
Clifton E. Barry National Institute of Allergy and Infectious Diseases
Eric J. Rubin
Eric J. Rubin Harvard University
Wolfgang Hillen
Wolfgang Hillen University of Erlangen-Nuremberg

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