World's Best Scientists 2026 revealed!

D-Index & Metrics

Biology and Biochemistry

D-Index
42
Citations
10698
World Ranking
19450
National Ranking
7933

Overview

Huilin Zhou is affiliated with the University of California, San Diego in the United States. Their research primarily falls within the broad field of Biochemistry, Genetics, and Molecular Biology, with a total of 57 publications in this area.

Their work spans several subfields, including Molecular Biology, Cell Biology, Cognitive Neuroscience, Cardiology and Cardiovascular Medicine, and Plant Science. The focus of their research covers a range of specific topics such as Microtubule and mitosis dynamics, DNA Repair Mechanisms, Ubiquitin and proteasome pathways, Chromosomal and Genetic Variations, RNA modifications and cancer, Cardiac Health and Mental Health, and Genomics and Chromatin Dynamics.

Among the recent papers authored or co-authored by Huilin Zhou are:

  • The SMC-family Wadjet complex protects bacteria from plasmid transformation by recognition and cleavage of closed-circular DNA, 2022, Molecular Cell
  • An E1-E2 fusion protein primes antiviral immune signalling in bacteria, 2023, Nature
  • Ciliary transition zone proteins coordinate ciliary protein composition and ectosome shedding, 2022, Nature Communications
  • Professional identity, job satisfaction, and intention to stay among clinical nurses during the prolonged COVID-19 pandemic: A mediation analysis, 2022, Japan Journal of Nursing Science
  • SUMO orchestrates multiple alternative DNA-protein crosslink repair pathways, 2021, Cell Reports

Huilin Zhou frequently publishes in several venues, most notably:

  • bioRxiv (Cold Spring Harbor Laboratory) with 9 publications
  • Nature with 3 publications
  • arXiv (Cornell University) with 3 publications
  • PLoS Genetics with 2 publications
  • BMC Health Services Research with 2 publications

Collaborators who appear frequently in Zhou's research include Raymond T. Suhandynata, Yun Quan, Jiaxi Cai, Stephen M. Hinshaw, and Kevin D. Corbett, each contributing to multiple joint publications.

Best Publications

  • Quantitative profiling of differentiation-induced microsomal proteins using isotope-coded affinity tags and mass spectrometry.

    David K. Han;Jimmy Eng;Huilin Zhou;Ruedi Aebersold

  • A systematic approach to the analysis of protein phosphorylation

    Huilin Zhou;Julian D. Watts;Julian D. Watts;Ruedi Aebersold;Ruedi Aebersold

  • A Multidimensional Chromatography Technology for In-depth Phosphoproteome Analysis

    Claudio P. Albuquerque;Claudio P. Albuquerque;Marcus B. Smolka;Samuel H. Payne;Vineet Bafna

  • Proteome-wide identification of in vivo targets of DNA damage checkpoint kinases.

    Marcus B. Smolka;Claudio P. Albuquerque;Sheng-hong Chen;Huilin Zhou

  • Quantitative proteome analysis by solid-phase isotope tagging and mass spectrometry.

    Huilin Zhou;Jeffrey A. Ranish;Julian D. Watts;Ruedi Aebersold

  • ALS-associated mutations in TDP-43 increase its stability and promote TDP-43 complexes with FUS/TLS

    Shuo-Chien Ling;Claudio P. Albuquerque;Joo Seok Han;Clotilde Lagier-Tourenne

  • GOLPH3 Bridges Phosphatidylinositol-4- Phosphate and Actomyosin to Stretch and Shape the Golgi to Promote Budding

    Holly C. Dippold;Michelle M. Ng;Suzette E. Farber-Katz;Sun-Kyung Lee

  • TANGO1 facilitates cargo loading at endoplasmic reticulum exit sites.

    Kota Saito;Mei Chen;Fred Bard;Shenghong Chen

  • Global analyses of sumoylated proteins in Saccharomyces cerevisiae. Induction of protein sumoylation by cellular stresses.

    Weidong Zhou;Jennifer J. Ryan;Huilin Zhou;Huilin Zhou

  • Optimization of the isotope-coded affinity tag-labeling procedure for quantitative proteome analysis.

    Marcus B. Smolka;Huilin Zhou;Subhasish Purkayastha;Ruedi Aebersold

  • Identification of H3K4me1-associated proteins at mammalian enhancers.

    Andrea Local;Hui Huang;Hui Huang;Claudio P Albuquerque;Namit Singh

  • ALS-causative mutations in FUS/TLS confer gain and loss of function by altered association with SMN and U1-snRNP.

    Shuying Sun;Shuo Chien Ling;Shuo Chien Ling;Jinsong Qiu;Claudio P. Albuquerque

  • DNA damage triggers Golgi dispersal via DNA-PK and GOLPH3.

    Suzette E. Farber-Katz;Holly C. Dippold;Matthew D. Buschman;Marshall C. Peterman

  • Cell junction-associated proteins IQGAP1, MAGI-2, CASK, spectrins, and α-actinin are components of the nephrin multiprotein complex

    Sanna Lehtonen;Jennifer J. Ryan;Krystyna Kudlicka;Noriaki Iino

  • Quantitative Protein Profiling Using Two-dimensional Gel Electrophoresis, Isotope-coded Affinity Tag Labeling, and Mass Spectrometry

    Marcus Smolka;Huilin Zhou;Ruedi Aebersold

  • Genome-wide lethality screen identifies new PI4,5P2 effectors that regulate the actin cytoskeleton.

    Anjon Audhya;Robbie Loewith;Ainslie B Parsons;Lu Gao;Lu Gao

  • mTORC2 Regulates Amino Acid Metabolism in Cancer by Phosphorylation of the Cystine-Glutamate Antiporter xCT.

    Yuchao Gu;Claudio P. Albuquerque;Daniel Braas;Wei Zhang

  • A proteome-wide analysis of kinase-substrate network in the DNA damage response.

    Sheng-hong Chen;Claudio P. Albuquerque;Jason Liang;Raymond T. Suhandynata

  • Functional Interaction of Calcium-/Calmodulin-dependent Protein Kinase II and Cytosolic Phospholipase A2

    Mubarack M. Muthalif;Ying Hefner;Stéphane Canaan;Jason Harper

  • Mass spectrometric and kinetic analysis of ASF/SF2 phosphorylation by SRPK1 and Clk/Sty.

    Adolfo Velazquez-Dones;Jonathan C. Hagopian;Chen-Ting Ma;Xiang-Yang Zhong

Frequent Co-Authors

Marcus B. Smolka
Marcus B. Smolka Cornell University
Richard D. Kolodner
Richard D. Kolodner University of California, San Diego
Kevin D. Corbett
Kevin D. Corbett University of California, San Diego
Christopher D. Putnam
Christopher D. Putnam University of California, San Diego
Erik Lindahl
Erik Lindahl Stockholm University
Marilyn G. Farquhar
Marilyn G. Farquhar University of California, San Diego
Frank B. Furnari
Frank B. Furnari University of California, San Diego
Don W. Cleveland
Don W. Cleveland University of California, San Diego
Bing Ren
Bing Ren New York Genome Center

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