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D-Index & Metrics

Biology and Biochemistry

D-Index
61
Citations
12073
World Ranking
11452
National Ranking
4948

Overview

Ulrich Baxa is affiliated with Leidos in the United States, where their research contributions span biochemistry, genetics, molecular biology, and engineering. Their work involves a broad array of specialized subfields including molecular biology, structural biology, electrical and electronic engineering, condensed matter physics, and biomedical engineering.

The scientist has contributed notably to several topics such as advanced electron microscopy techniques and applications, glycosylation and glycoproteins research, crystallography and radiation phenomena, molecular junctions and nanostructures, nanofabrication and lithography techniques, as well as microtubule and mitosis dynamics, and chromosomal and genetic variations.

Frequent publication venues for Ulrich Baxa include:

  • Biophysical Journal
  • Microscopy and Microanalysis
  • Cell Cycle
  • Biochemistry
  • Microscopy Today

Ulrich Baxa has collaborated multiple times with coauthors such as Thomas J. Edwards, Matt Hutchison, Adam D. Wier, Joseph Finney, and Sriram Subramaniam.

Their recent papers include:

  • Autophosphorylation-induced self-assembly and STIL-dependent reinforcement underlie Plk4's ring-to-dot localization conversion around a human centriole, 2020, Cell Cycle
  • Self-Competitive Inhibition of the Bacteriophage P22 Tailspike Endorhamnosidase by O-Antigen Oligosaccharides, 2020, Biochemistry
  • Preparation of Liposomes for Negative Staining TEM, 2020, Microscopy and Microanalysis
  • The National Cryo-EM Facility at Frederick National Laboratory: Operational Procedures, Methods, and Outputs, 2020, Microscopy Today
  • Data Management Pipeline at the National Cryo-EM Facility, 2020, Microscopy and Microanalysis

Best Publications

  • Structure-Based Design of a Fusion Glycoprotein Vaccine for Respiratory Syncytial Virus

    Jason S. McLellan;Man Chen;M. Gordon Joyce;Mallika Sastry

  • Structure of RSV Fusion Glycoprotein Trimer Bound to a Prefusion-Specific Neutralizing Antibody

    Jason S. McLellan;Man Chen;Sherman Leung;Kevin W. Graepel

  • Trimeric HIV-1-Env Structures Define Glycan Shields from Clades A, B and G

    Guillaume B.E. Stewart-Jones;Cinque Soto;Thomas Lemmin;Thomas Lemmin;Gwo Yu Chuang

  • A Conserved Mechanism for Centromeric Nucleosome Recognition by Centromere Protein CENP-C

    Hidenori Kato;Jiansheng Jiang;Bing Rui Zhou;Marieke Rozendaal

  • Crystal structure, conformational fixation and entry-related interactions of mature ligand-free HIV-1 Env

    Young Do Kwon;Marie Pancera;Priyamvada Acharya;Ivelin S. Georgiev

  • Rational Design of an Epstein-Barr Virus Vaccine Targeting the Receptor-Binding Site

    Masaru Kanekiyo;Wei Bu;M. Gordon Joyce;Geng Meng

  • Vaccine-Induced Antibodies that Neutralize Group 1 and Group 2 Influenza A Viruses

    M. Gordon Joyce;Adam K. Wheatley;Paul V. Thomas;Gwo-Yu Chuang

  • Morphological development of cellulose fibrils of a bleached eucalyptus pulp by mechanical fibrillation

    Q. Q. Wang;J. Y. Zhu;R. Gleisner;T. A. Kuster

  • Mosaic nanoparticle display of diverse influenza virus hemagglutinins elicits broad B cell responses

    Masaru Kanekiyo;M Gordon Joyce;M Gordon Joyce;Rebecca A Gillespie;John R Gallagher

  • Early steps in primary cilium assembly require EHD1/EHD3-dependent ciliary vesicle formation

    Quanlong Lu;Christine Insinna;Carolyn Ott;Jimmy Stauffer

  • Crystal structure of phage P22 tailspike protein complexed with Salmonella sp. O-antigen receptors

    Stefan Steinbacher;Ulrich Baxa;Stefan Miller;Andrej Weintraub

  • Phage P22 tailspike protein: crystal structure of the head-binding domain at 2.3 A, fully refined structure of the endorhamnosidase at 1.56 A resolution, and the molecular basis of O-antigen recognition and cleavage.

    Stefan Steinbacher;Stefan Miller;Ulrich Baxa;Nediljko Budisa

  • Prion generation in vitro: amyloid of Ure2p is infectious

    Andreas Brachmann;Ulrich Baxa;Reed Brendon Wickner

  • Mechanism of inactivation on prion conversion of the Saccharomyces cerevisiae Ure2 protein

    Ulrich Baxa;Vladislav Speransky;Alasdair C. Steven;Reed B. Wickner

  • Structural and molecular basis for Ebola virus neutralization by protective human antibodies

    John Misasi;John Misasi;John Misasi;Morgan S. A. Gilman;Masaru Kanekiyo;Miao Gui

  • Characterization of beta-sheet structure in Ure2p1-89 yeast prion fibrils by solid-state nuclear magnetic resonance.

    Baxa U;Wickner Rb;Steven Ac;Anderson De

  • Architecture of Ure2p Prion Filaments: THE N-TERMINAL DOMAINS FORM A CENTRAL CORE FIBER *

    Ulrich Baxa;Kimberly L. Taylor;Joseph S. Wall;Martha N. Simon

  • Scrambled prion domains form prions and amyloid.

    Eric D. Ross;Ulrich Baxa;Reed B. Wickner

  • Approaching zero cellulose loss in cellulose nanocrystal (CNC) production: recovery and characterization of cellulosic solid residues (CSR) and CNC

    Q. Q. Wang;Q. Q. Wang;J. Y. Zhu;R. S. Reiner;S. P. Verrill

  • A model for Ure2p prion filaments and other amyloids: The parallel superpleated β-structure

    Andrey V. Kajava;Ulrich Baxa;Reed B. Wickner;Alasdair C. Steven

Frequent Co-Authors

Peter D. Kwong
Peter D. Kwong Columbia University Medical Center
Ivelin S. Georgiev
Ivelin S. Georgiev Vanderbilt University Medical Center
John R. Mascola
John R. Mascola ModeX Therapeutics
Yongping Yang
Yongping Yang National Institutes of Health
Alasdair C. Steven
Alasdair C. Steven National Institutes of Health
Reed B. Wickner
Reed B. Wickner National Institutes of Health
M. Gordon Joyce
M. Gordon Joyce Henry M. Jackson Foundation
Baoshan Zhang
Baoshan Zhang National Institute of Allergy and Infectious Diseases
Barney S. Graham
Barney S. Graham Morehouse School of Medicine
Robert Seckler
Robert Seckler University of Potsdam

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