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Microbiology

D-Index
53
Citations
9584
World Ranking
4107
National Ranking
1592

Overview

Susan C. Straley is affiliated with the University of Kentucky in the United States. Their research primarily spans the fields of Pharmacology, Toxicology and Pharmaceutics, as well as Biochemistry, Genetics and Molecular Biology. Within these main fields, their work focuses on subfields such as Pharmacology and Genetics.

The main topics covered by their research include:

  • Yersinia bacterium, plague, ectoparasites research
  • Pharmacological Effects of Natural Compounds
  • Plant-based Medicinal Research

Among the recent scholarly contributions by Susan C. Straley is the paper titled Toward a molecular pathogenic pathway for Yersinia pestis YopM, published in 2020 in the venue UNC Libraries.

Frequent co-authors who have collaborated with this researcher include:

  • Annette Uittenbogaard
  • R. Lakshman Chelvarajan
  • Tanya Myers-Morales
  • Amanda A. Gorman
  • W. June Brickey

Their publications have appeared in venues such as:

  • UNC Libraries

This profile captures the scope of Susan C. Straley's academic involvement, showcasing contributions to molecular pathogenic pathways and pharmacological research, along with collaboration networks and specialization in natural compound effects and plant-based medicinal studies.

Best Publications

  • Genome Sequence of Yersinia pestis KIM

    Wen Deng;Valerie Burland;Guy Plunkett;Adam Boutin

  • Virulence genes regulated at the transcriptional level by Ca2+ in Yersinia pestis include structural genes for outer membrane proteins.

    Susan C. Straley;William S. Bowmer

  • Conditional macrophage ablation in transgenic mice expressing a Fas-based suicide gene

    Sandra H. Burnett;Edward J. Kershen;Jiayou Zhang;Li Zeng

  • Pigment content and molar extinction coefficients of photochemical reaction centers from Rhodopseudomonas spheroides.

    Susan C. Straley;William W. Parson;David C. Mauzerall;Roderick K. Clayton

  • Regulation by Ca2+ in the Yersinia low-Ca2+ response.

    Susan C. Straley;Gregory V. Plano;Elźbieta Skrzypek;Pryce L. Haddix

  • LcrD, a membrane-bound regulator of the Yersinia pestis low-calcium response.

    Gregory V Plano;S S Barve;S C Straley

  • YopM inhibits platelet aggregation and is necessary for virulence of Yersinia pestis in mice

    Ka Yin Leung;B. S. Reisner;S. C. Straley

  • Yops of Yersinia spp. pathogenic for humans.

    S C Straley;E Skrzypek;G V Plano;J B Bliska

  • Targeting of the Yersinia pestis YopM protein into HeLa cells and intracellular trafficking to the nucleus.

    Elzbieta Skrzypek;Clarissa Cowan;Susan C. Straley

  • Yersinia pestis pH 6 antigen: genetic, biochemical, and virulence characterization of a protein involved in the pathogenesis of bubonic plague.

    L E Lindler;M S Klempner;S C Straley

  • Environmental modulation of gene expression and pathogenesis in Yersinia.

    Susan C. Straley;Robert D. Perry

  • YopD of Yersinia pestis Plays a Role in Negative Regulation of the Low-Calcium Response in Addition to Its Role in Translocation of Yops

    Andrew W. Williams;Susan C. Straley

  • The plague virulence protein YopM targets the innate immune response by causing a global depletion of NK cells.

    Edward J. Kerschen;Donald A. Cohen;Alan M. Kaplan;Susan C. Straley

  • DNA Sequencing and Analysis of the Low-Ca2+-Response Plasmid pCD1 of Yersinia pestis KIM5

    Robert D. Perry;Susan C. Straley;Jacqueline D. Fetherston;Debra J. Rose

  • Cytoplasmic and membrane proteins of yersiniae cultivated under conditions simulating mammalian intracellular environment.

    Susan C. Straley;Robert R. Brubaker

  • The yopM gene of Yersinia pestis encodes a released protein having homology with the human platelet surface protein GPIb alpha.

    K Y Leung;S C Straley

  • Virulence role of V antigen of Yersinia pestis at the bacterial surface.

    Kenneth A. Fields;Matthew L. Nilles;Clarissa Cowan;Susan C. Straley

  • Invasion of epithelial cells by Yersinia pestis: evidence for a Y. pestis-specific invasin.

    Clarissa Cowan;Heather A. Jones;Yasemin H. Kaya;Robert D. Perry

  • LcrQ and SycH function together at the Ysc type III secretion system in Yersinia pestis to impose a hierarchy of secretion

    Christine R. Wulff-Strobel;Andrew W. Williams;Susan C. Straley

  • Differential effects of deletions in lcrV on secretion of V antigen, regulation of the low-Ca2+ response, and virulence of Yersinia pestis.

    E Skrzypek;S C Straley

  • The Yersinia pestis V antigen is a regulatory protein necessary for Ca2(+)-dependent growth and maximal expression of low-Ca2+ response virulence genes.

    S B Price;C Cowan;R D Perry;S C Straley

Frequent Co-Authors

Robert D. Perry
Robert D. Perry University of Kentucky
Roderick K. Clayton
Roderick K. Clayton Cornell University
Mark S. Klempner
Mark S. Klempner University of Massachusetts Chan Medical School
Frederick R. Blattner
Frederick R. Blattner University of Wisconsin–Madison
Timo K. Korhonen
Timo K. Korhonen University of Helsinki
Roy Curtiss
Roy Curtiss University of Florida
B. Joseph Hinnebusch
B. Joseph Hinnebusch National Institutes of Health
Jenny P.-Y. Ting
Jenny P.-Y. Ting University of North Carolina at Chapel Hill
Nicole T. Perna
Nicole T. Perna University of Wisconsin–Madison
David C. Schwartz
David C. Schwartz University of Wisconsin–Madison

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Best Scientists Citing Susan C. Straley