World's Best Scientists 2026 revealed!

D-Index & Metrics

Molecular Biology

D-Index
43
Citations
17270
World Ranking
2942
National Ranking
1402

Overview

Eric T. Wang is affiliated with the University of Florida in the United States and conducts research primarily in the field of Biochemistry, Genetics and Molecular Biology. Their work spans several subfields including Molecular Biology, Cellular and Molecular Neuroscience, Neurology, Genetics, and Physiology.

Their research covers complex biological processes related to genetic neurodegenerative diseases, RNA research and splicing, mitochondrial function and pathology, as well as RNA modifications and cancer. Additional topics include RNA and protein synthesis mechanisms, muscle physiology and disorders, and CRISPR and genetic engineering.

Eric T. Wang has published frequently in several scientific venues. The most common publication sources include:

  • bioRxiv (Cold Spring Harbor Laboratory)
  • Nature Reviews Molecular Cell Biology
  • Proceedings of the National Academy of Sciences
  • Circulation
  • Nature Communications

Recent publications by Wang illustrate the breadth of their research interests:

  • Molecular mechanisms underlying nucleotide repeat expansion disorders, 2021, Nature Reviews Molecular Cell Biology
  • Small-molecule targeted recruitment of a nuclease to cleave an oncogenic RNA in a mouse model of metastatic cancer, 2020, Proceedings of the National Academy of Sciences
  • Ribonuclease recruitment using a small molecule reduced c9ALS/FTD r(G4C2) repeat expansion in vitro and in vivo ALS models, 2021, Science Translational Medicine
  • Microtubule-based transport is essential to distribute RNA and nascent protein in skeletal muscle, 2021, Nature Communications
  • Negative autoregulation mitigates collateral RNase activity of repeat-targeting CRISPR-Cas13d in mammalian cells, 2022, Cell Reports

This body of work addresses critical molecular mechanisms underlying neurological conditions and mechanisms of RNA targeting, transport, and regulation.

Frequent collaborators in their research include:

  • Chase P. Kelley
  • Hailey Olafson
  • Lance T. Denes
  • Matthew D. Disney
  • Kiril Poukalov

Their extensive publication record primarily focuses on understanding the molecular basis of genetic diseases and developing innovative molecular tools for therapeutic targeting. The integration of RNA biology with neurodegeneration and muscle physiology demonstrates a multidisciplinary approach within molecular and cellular neuroscience and biochemistry.

Best Publications

  • Alternative Isoform Regulation in Human Tissue Transcriptomes

    Eric T. Wang;Rickard Sandberg;Rickard Sandberg;Shujun Luo;Irina Khrebtukova

  • Analysis and design of RNA sequencing experiments for identifying isoform regulation

    Yarden Katz;Eric T Wang;Edoardo M Airoldi;Christopher B Burge

  • An abundance of ubiquitously expressed genes revealed by tissue transcriptome sequence data.

    Daniel Ramsköld;Eric T. Wang;Christopher B. Burge;Rickard Sandberg

  • Integration of flow-dependent endothelial phenotypes by Kruppel-like factor 2

    Kush M. Parmar;H. Benjamin Larman;Guohao Dai;Yuzhi Zhang

  • Recent acceleration of human adaptive evolution

    John Hawks;Eric T. Wang;Gregory M. Cochran;Henry C. Harpending

  • Transcriptome-wide Regulation of Pre-mRNA Splicing and mRNA Localization by Muscleblind Proteins

    Eric T. Wang;Neal A.L. Cody;Sonali Jog;Michela Biancolella

  • Selective modulation of human natural killer cells in vivo after prolonged infusion of low dose recombinant interleukin 2.

    M A Caligiuri;C Murray;M J Robertson;E Wang

  • MBNL proteins repress ES-cell-specific alternative splicing and reprogramming

    Hong Han;Manuel Irimia;P. Joel Ross;Hoon Ki Sung

  • Biomechanical Forces in Atherosclerosis-Resistant Vascular Regions Regulate Endothelial Redox Balance via Phosphoinositol 3-Kinase/Akt-Dependent Activation of Nrf2

    Guohao Dai;Saran Vaughn;Yuzhi Zhang;Eric T. Wang

  • Distal Alternative Last Exons Localize mRNAs to Neural Projections.

    J. Matthew Taliaferro;Marina Vidaki;Ruan Oliveira;Sara Olson

  • Molecular mechanisms underlying nucleotide repeat expansion disorders.

    Indranil Malik;Chase P Kelley;Eric T Wang;Peter K Todd

  • Barcoded nanoparticles for high throughput in vivo discovery of targeted therapeutics

    James Dahlman;James Dahlman;Kevin John Kauffman;Yiping Xing;Taylor E. Shaw

  • Quantitative visualization of alternative exon expression from RNA-seq data.

    Yarden Katz;Eric T. Wang;Jacob Silterra;Schraga Schwartz

  • Splicing misregulation of SCN5A contributes to cardiac-conduction delay and heart arrhythmia in myotonic dystrophy

    Fernande Freyermuth;Frédérique Rau;Yosuke Kokunai;Thomas Linke

  • Antagonistic Regulation of mRNA Expression and Splicing by CELF and MBNL Proteins

    Eric T. Wang;Amanda J. Ward;Jennifer M. Cherone;Jimena Giudice

  • Identification of an endogenous ligand that activates pregnane X receptor-mediated sterol clearance.

    Isabelle Dussault;Hye-Dong Yoo;Min Lin;Eric Wang

  • Global regulation of alternative splicing during myogenic differentiation

    Christopher S. Bland;Eric T. Wang;Anthony Vu;Marjorie P. David

  • Alternative splicing regulates vesicular trafficking genes in cardiomyocytes during postnatal heart development.

    Jimena Giudice;Zheng Xia;Eric T. Wang;Marissa A. Scavuzzo

  • Design of a Bioactive Small Molecule That Targets the Myotonic Dystrophy Type 1 RNA via an RNA Motif–Ligand Database and Chemical Similarity Searching

    Raman Parkesh;Jessica L. Childs-Disney;Masayuki Nakamori;Amit Kumar

  • Small-molecule targeted recruitment of a nuclease to cleave an oncogenic RNA in a mouse model of metastatic cancer

    Matthew G. Costales;Haruo Aikawa;Yue Li;Jessica L. Childs-Disney

Frequent Co-Authors

Maurice S. Swanson
Maurice S. Swanson University of Florida
Matthew D. Disney
Matthew D. Disney Scripps Research Institute
Charles A. Thornton
Charles A. Thornton University of Rochester Medical Center
Thomas A. Cooper
Thomas A. Cooper Baylor College of Medicine
Laura P.W. Ranum
Laura P.W. Ranum University of Florida
Rickard Sandberg
Rickard Sandberg Karolinska Institute
Guillermo García-Cardeña
Guillermo García-Cardeña Brigham and Women's Hospital
Jeffrey L. Wrana
Jeffrey L. Wrana Lunenfeld-Tanenbaum Research Institute

If you think any of the details on this page are incorrect, let us know.

Report an issue

We appreciate your kind effort to assist us to improve this page, it would be helpful providing us with as much detail as possible in the text box below:

Related Online Degrees & Career Pathways

Exploring a career in molecular biology opens the door to a wide range of related online degrees and professional pathways. For those interested in the intersection between biology and healthcare, online direct entry MSN programs allow non-nurses with a science background to make a swift transition to advanced nursing roles. These programs are ideal for molecular biology graduates seeking to enter the healthcare workforce quickly.

If you are already in the nursing field and considering degree advancement, comparing institutions like Chamberlain vs Capella RN to BSN program options can help you find the curriculum and flexibility that match your needs. For those looking for cost-effective solutions, the cheapest BSN to MSN online pathways make advancing your education more affordable.

When choosing an online degree, it’s crucial to select a reputable institution. The list of non profit colleges highlights accredited universities that maintain high educational standards and may offer more affordable tuition compared to for-profit schools. Overall, these pathways empower molecular biology students to diversify career options, from research to healthcare leadership.

Best Scientists Citing Eric T. Wang

Trending Scientists

Recently Published Articles