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D-Index & Metrics

Biology and Biochemistry

D-Index
51
Citations
13641
World Ranking
16978
National Ranking
7000

Overview

Erfei Bi is a researcher affiliated with the University of Pennsylvania in the United States. Their work primarily focuses on Biochemistry, Genetics, and Molecular Biology, with a notable emphasis on Molecular Biology as a subfield. Additional subfields of their research include Biomedical Engineering, Cell Biology, Cellular and Molecular Neuroscience, and Food Science.

The scope of Erfei Bi's research covers several topics, most prominently fungal and yeast genetics research. Other significant topics include biofuel production and bioconversion, genetic neurodegenerative diseases, fermentation and sensory analysis, plant reproductive biology, microtubule and mitosis dynamics, and microbial metabolic engineering and bioproduction.

Erfei Bi has contributed to a range of scientific publications, with recent papers including:

  • Critical Roles of a RhoGEF-Anillin Module in Septin Architectural Remodeling during Cytokinesis (2020, Current Biology)
  • The kinetic landscape and interplay of protein networks in cytokinesis (2020, iScience)
  • Septin Assembly and Remodeling at the Cell Division Site During the Cell Cycle (2021, Frontiers in Cell and Developmental Biology)
  • The LKB1-like Kinase Elm1 Controls Septin Hourglass Assembly and Stability by Regulating Filament Pairing (2020, Current Biology)
  • Involvement of an Actomyosin Contractile Ring in Saccharomyces cerevisiae Cytokinesis (2020, UNC Libraries)

The prominent venues where Erfei Bi frequently publishes include UNC Libraries, bioRxiv (Cold Spring Harbor Laboratory), SSRN Electronic Journal, Current Biology, and iScience.

Erfei Bi has collaborated with various researchers, with frequent co-authors including Hiroki Okada, Kangji Wang, Joseph Marquardt, John R. Pringle, and Brittany MacTaggart.

Best Publications

  • FtsZ ring structure associated with division in Escherichia coli.

    Erfei Bi;Joe Lutkenhaus

  • Role of Formins in Actin Assembly: Nucleation and Barbed-End Association

    David Pruyne;Marie Evangelista;Changsong Yang;Erfei Bi

  • Central Roles of Small GTPases in the Development of Cell Polarity in Yeast and Beyond

    Hay-Oak Park;Erfei Bi

  • Involvement of an Actomyosin Contractile Ring in Saccharomyces cerevisiae Cytokinesis

    Erfei Bi;Paul Maddox;Daniel J. Lew;E.D. Salmon

  • Cell division inhibitors SulA and MinCD prevent formation of the FtsZ ring.

    Erfei Bi;J. Lutkenhaus

  • Comparative Analysis of Cytokinesis in Budding Yeast, Fission Yeast and Animal Cells

    Mohan K. Balasubramanian;Erfei Bi;Michael Glotzer

  • FtsZ ring formation in fts mutants.

    S G Addinall;E Bi;J Lutkenhaus

  • Cell Polarization and Cytokinesis in Budding Yeast

    Erfei Bi;Hay-Oak Park

  • A protein interaction map for cell polarity development

    Becky L. Drees;Bryan Sundin;Elizabeth Brazeau;Juliane P. Caviston

  • Cdc42 interacts with the exocyst and regulates polarized secretion.

    Xiaoyu Zhang;Erfei Bi;Peter Novick;Lilin Du

  • The role of Cdc42p GTPase-activating proteins in assembly of the septin ring in yeast.

    Juliane P. Caviston;Mark Longtine;John R. Pringle;Erfei Bi

  • ZDS1 and ZDS2, genes whose products may regulate Cdc42p in Saccharomyces cerevisiae.

    E Bi;J R Pringle

  • Septin structure and function in yeast and beyond.

    Younghoon Oh;Erfei Bi

  • Roles of Hof1p, Bni1p, Bnr1p, and myo1p in cytokinesis in Saccharomyces cerevisiae.

    Elizabeth A. Vallen;Juliane Caviston;Erfei Bi

  • Regulation of septin organization and function in yeast.

    Mark S Longtine;Erfei Bi

  • Two active states of the Ras-related Bud1/Rsr1 protein bind to different effectors to determine yeast cell polarity.

    Hay-Oak Park;Erfei Bi;John R. Pringle;Ira Herskowitz

  • Establishment of cell polarity in yeast.

    J.R. Pringle;E. Bi;H.A. Harkins;J.E. Zahner

  • Stable and dynamic axes of polarity use distinct formin isoforms in budding yeast.

    David Pruyne;Lina Gao;Erfei Bi;Anthony Bretscher

  • Mutation of RGA1, which encodes a putative GTPase-activating protein for the polarity-establishment protein Cdc42p, activates the pheromone-response pathway in the yeast Saccharomyces cerevisiae.

    B. J. Stevenson;B. Ferguson;C. De Virgilio;Erfei Bi

  • A single-cell transcriptomic analysis reveals precise pathways and regulatory mechanisms underlying hepatoblast differentiation.

    Li Yang;Wei-Hua Wang;Wei-Lin Qiu;Zhen Guo

Frequent Co-Authors

John R. Pringle
John R. Pringle Stanford University
Joe Lutkenhaus
Joe Lutkenhaus University of Kansas
Ryuichi Nishihama
Ryuichi Nishihama Tokyo University of Science
Tatyana Svitkina
Tatyana Svitkina University of Pennsylvania
Charles Boone
Charles Boone University of Toronto
Wei Guo
Wei Guo University of Pennsylvania
Yoshikazu Ohya
Yoshikazu Ohya University of Tokyo
Sally H. Zigmond
Sally H. Zigmond University of Pennsylvania
Amy Hin Yan Tong
Amy Hin Yan Tong University of Toronto
Anthony Bretscher
Anthony Bretscher Cornell University

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