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D-Index
48
Citations
7183
World Ranking
15373
National Ranking
3891

Overview

Paul A. Lindahl is affiliated with Texas A&M University in the United States. Their research spans across the fields of Biochemistry, Genetics and Molecular Biology as well as Materials Science. Lindahl's work includes significant contributions to Materials Chemistry, Molecular Biology, Nutrition and Dietetics, Hematology, and Inorganic Chemistry.

The main topics covered in Lindahl's research include Trace Elements in Health, X-ray Diffraction in Crystallography, Crystallization and Solubility Studies, Iron Metabolism and Disorders, Heavy Metal Exposure and Toxicity, Electrochemical Analysis and Applications, and Metalloenzymes and iron-sulfur proteins.

Some of Lindahl's recent papers are:

  • Thermal decarboxylation for the generation of hierarchical porosity in isostructural metal-organic frameworks containing open metal sites, 2021, Materials Advances
  • Labile Iron Pool of Isolated Escherichia coli Cytosol Likely Includes Fe-ATP and Fe-Citrate but not Fe-Glutathione or Aqueous Fe, 2023, Journal of the American Chemical Society
  • Low-molecular-mass labile metal pools in Escherichia coli: advances using chromatography and mass spectrometry, 2021, JBIC Journal of Biological Inorganic Chemistry
  • Chromatographic detection of low-molecular-mass metal complexes in the cytosol of Saccharomyces cerevisiae, 2020, Metallomics
  • Discovery of an unusual copper homeostatic mechanism in yeast cells respiring on minimal medium and an unexpectedly diverse labile copper pool, 2023, Journal of Biological Chemistry

Lindahl frequently publishes in the following venues:

  • Journal of Biological Chemistry
  • The Cambridge Structural Database
  • Journal of the American Chemical Society
  • JBIC Journal of Biological Inorganic Chemistry
  • Metallomics

Co-authorship is a notable feature of Lindahl's work, with frequent collaborators including Shaik Waseem Vali, Sung-Min Hyun, Kaleb A. Reid, Hayley N. Brawley, and Joshua E. Kim.

Best Publications

  • Ni-Zn-[Fe4-S4] and Ni-Ni-[Fe4-S4] clusters in closed and open subunits of acetyl-CoA synthase/carbon monoxide dehydrogenase.

    Claudine Darnault;Anne Volbeda;Eun Jin Kim;Pierre Legrand

  • Mössbauer, EPR, and magnetization studies of the Azotobacter vinelandii Fe protein. Evidence for a [4Fe-4S]1+ cluster with spin S = 3/2.

    P A Lindahl;E P Day;T A Kent;W H Orme-Johnson

  • The Ni-containing carbon monoxide dehydrogenase family: light at the end of the tunnel?

    Paul A. Lindahl

  • CO dehydrogenase from Clostridium thermoaceticum. EPR and electrochemical studies in CO2 and argon atmospheres.

    Paul A. Lindahl;Eckard Münck;Stephen W. Ragsdale

  • Mössbauer, EPR, and optical studies of the corrinoid/iron-sulfur protein involved in the synthesis of acetyl coenzyme A by Clostridium thermoaceticum.

    S W Ragsdale;P A Lindahl;E Münck

  • Mössbauer study of CO dehydrogenase from Clostridium thermoaceticum.

    Paul A. Lindahl;Stephen W. Ragsdale;Eckard Münck

  • LdpA: a component of the circadian clock senses redox state of the cell.

    Natalia B Ivleva;Matthew R Bramlett;Paul A Lindahl;Susan S Golden

  • Effects of sulfur site modification on the redox potentials of derivatives of [N,N'-bis(2-mercaptoethyl)-1,5-diazacyclooctanato]nickel(II)

    Patrick J. Farmer;Joseph H. Reibenspies;Paul A. Lindahl;Marcetta Y. Darensbourg

  • Metal-Metal Bonds in Biology

    Paul A. Lindahl

  • Nickel and iron EXAFS of F420-reducing hydrogenase from Methanobacterium thermoautotrophicum

    Paul A. Lindahl;Nakao Kojima;Robert P. Hausinger;Judith A. Fox

  • Acetyl-coenzyme A synthase: the case for a Ni(p)(0)-based mechanism of catalysis.

    Paul A. Lindahl

  • METHYLATION OF CARBON MONOXIDE DEHYDROGENASE FROM CLOSTRIDIUM THERMOACETICUM AND MECHANISM OF ACETYL COENZYME A SYNTHESIS

    David P. Barondeau;Paul A. Lindahl

  • A Multinuclear ENDOR Study of the C-Cluster in CO Dehydrogenase from Clostridium thermoaceticum: Evidence for HxO and Histidine Coordination to the [Fe4S4] Center

    Victoria J. DeRose;Joshua Telser;Mark E. Anderson;Paul A. Lindahl

  • EPR and Mössbauer studies of nucleotide-bound nitrogenase iron protein from Azotobacter vinelandii.

    P A Lindahl;N J Gorelick;E Münck;W H Orme-Johnson

  • Mössbauer and EPR Study of the Ni-Activated α-Subunit of Carbon Monoxide Dehydrogenase from Clostridium thermoaceticum

    Jinqiang Xia;Zhengguo Hu;Codrina V. Popescu;Paul A. Lindahl

  • Metallothioneins and Related Chelators: Metal Ions in Life Sciences

    Astrid Sigel;Helmut Sigel;Roland K O Sigel

  • Evidence of a Molecular Tunnel Connecting the Active Sites for CO2 Reduction and Acetyl-CoA Synthesis in Acetyl-CoA Synthase from Clostridium thermoaceticum

    Ernest L. Maynard;Paul A. Lindahl

  • Nature of the C-Cluster in Ni-Containing Carbon Monoxide Dehydrogenases

    Unknown

  • Biophysical characterization of the iron in mitochondria from Atm1p-depleted Saccharomyces cerevisiae.

    Ren Miao;Hansoo Kim;Uma Mahendra Kumar Koppolu;E. Ann Ellis

  • 2,4,6-Trinitrotoluene Reduction by Carbon Monoxide Dehydrogenase from Clostridium thermoaceticum

    Shouqin Huang;Paul A. Lindahl;Chuanyue Wang;George N. Bennett

  • Inactivation of acetyl-CoA synthase/carbon monoxide dehydrogenase by copper.

    Matthew R Bramlett;Xiangshi Tan;Paul A Lindahl

Frequent Co-Authors

Eckard Münck
Eckard Münck Carnegie Mellon University
James C. Sacchettini
James C. Sacchettini Texas A&M University
Vytas A. Bankaitis
Vytas A. Bankaitis Texas A&M University
Frank M. Raushel
Frank M. Raushel Texas A&M University
Victoria J. DeRose
Victoria J. DeRose University of Oregon
Michael P. Hendrich
Michael P. Hendrich Carnegie Mellon University
Andrew Dancis
Andrew Dancis University of Pennsylvania
Juan C. Fontecilla-Camps
Juan C. Fontecilla-Camps Centre national de la recherche scientifique, CNRS
Robert A. Scott
Robert A. Scott University of Cambridge

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