Zhipeng Lu

Associate Professor of Pharmacology and Pharmaceutical Sciences

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Overview

RNA molecules fold into structures and intermolecular interactions to execute a second layer of genetic instructions beyond encoding proteins. Functions of RNA structures are pervasive and diverse, including many levels of gene regulation, guiding, scaffolding and catalysis. RNA molecules are directly involved in a variety of human diseases, such as genetic disorders resulting from mutations in noncoding RNAs, RNA binding proteins, and infections caused by RNA viruses (like HIV, HCV, Ebola, etc.). My research combines computational, chemical and biological approaches, and aims to elucidate the fundamental mechanisms of “RNA machines”. These studies will lead to new understanding and therapies targeting human diseases.

Awards

  • Fudan University: People’s Scholarship, 2005
     – 2008
  • Siyuan Foundation, HK, China: Siyuan Scholarship, 2006
     – 2007
  • UNC Chapel Hill: Graduate Student Transportation Grant, 2013
     – 2013
  • Damon Runyon Foundation, Sohn Foundation: Damon Runyon-Sohn Fellowship, 2015
     – 2017
  • RNA Society: RNA Society Scaringe Award, 2017
     – 2017
  • Stanford University: Jump Start Award for Excellence in Research, 2016
     – 2017
  • NHGRI: K99/R00 NIH Pathway to Independence Award, 2017
     – 2022

Education and Training

  • Fudan University, Shanghai, China — BS — 07/2008 — Biology
  • UNC Chapel Hill, Chapel Hill, NC, USA — PhD — 08/2014 — Biology
  • Stanford University, Stanford, CA, USA — Postdoc — 06/2018 — Biology

Research Funding

  • Decoding global RNP topologies in splicing regulation
    NIH · R01HG012928 · May 15, 2023 – Feb 28, 2027 · Role: Principal Investigator
  • High Throughput Determination of RNA 3D Structures and Dynamics in Vivo
    NIH · R35GM143068 · Aug 15, 2021 – Jul 31, 2026 · Role: Principal Investigator
  • Decoding the RNA Structurome: Method Development and Function Analysis.
    NIH · R00HG009662 · Dec 17, 2018 – Nov 30, 2021 · Role: Principal Investigator
  • Decoding the RNA structurome: method development and function analysis
    NIH · K99HG009662 · Aug 15, 2017 – May 31, 2019 · Role: Principal Investigator

Research Keywords

  • New chemical and computational technologies for the analysis of RNA structures and interactions
  • Organizing principle of the transcriptome in live cells: a molecular social network
  • RNA structures and interactions controlling gene expression and development
  • RNA structures and interactions in genetic and infectious diseases

Publications

  • Integrated Analysis of Cross-Link-Ligation Data for the Detection of RNA 2D/3D Structures and Interactions In Vivo. Methods Mol Biol. 2026; 2949:53-77.. View in PubMed
  • tRNA modifications: greasing the wheels of translation and beyond. RNA Biol. 2025 12; 22(1):1-25.. View in PubMed
  • Impaired phase separation and nucleolar functions in hiPSC models of SNORD118-related ribosomopathies. iScience. 2024 Aug 16; 27(8):110430.. View in PubMed
  • Recapitulating and reversing human brain ribosomopathy defects via the maladaptive integrated stress response. Sci Adv. 2024 02 02; 10(5):eadk1034.. View in PubMed
  • Chemical crosslinking and ligation methods for in vivo analysis of RNA structures and interactions. Methods Enzymol. 2023; 691:253-281.. View in PubMed
  • Chemical reversible crosslinking enables measurement of RNA 3D distances and alternative conformations in cells. Nat Commun. 2022 02 17; 13(1):911.. View in PubMed
  • Optimized photochemistry enables efficient analysis of dynamic RNA structuromes and interactomes in genetic and infectious diseases. Nat Commun. 2021 04 20; 12(1):2344.. View in PubMed
  • Structural modularity of the XIST ribonucleoprotein complex. Nat Commun. 2020 12 02; 11(1):6163.. View in PubMed
  • RISE: a database of RNA interactome from sequencing experiments. Nucleic Acids Res. 2018 01 04; 46(D1):D194-D201.. View in PubMed
  • PARIS: Psoralen Analysis of RNA Interactions and Structures with High Throughput and Resolution. Methods Mol Biol. 2018; 1649:59-84.. View in PubMed