Area of research
Molecular Biology · Cell Biology
Research interest
Research interests include RNA Research and Splicing, RNA modifications and cancer, RNA and protein synthesis mechanisms, and Endoplasmic Reticulum Stress and Disease.
Stress granules are shock absorbers that prevent excessive innate immune responses to dsRNA
The COPD GWAS gene ADGRG6 instructs function and injury response in human iPSC-derived type II alveolar epithelial cells
Selective Cleavage at CCA Ends and Anticodon Loops of tRNAs by Stress-Induced RNases
Early rRNA processing is a stress-dependent regulatory event whose inhibition maintains nucleolar integrity
SDE2 is an essential gene required for ribosome biogenesis and the regulation of alternative splicing
MVP Expression Facilitates Tumor Cell Proliferation and Migration Supporting the Metastasis of Colorectal Cancer Cells
Competing Protein-RNA Interaction Networks Control Multiphase Intracellular Organization
snoRNPs: Functions in Ribosome Biogenesis
Actionable Cytopathogenic Host Responses of Human Alveolar Type 2 Cells to SARS-CoV-2
eIF4G has intrinsic G-quadruplex binding activity that is required for tiRNA function
Tumor Interferon Signaling Is Regulated by a lncRNA INCR1 Transcribed from the PD-L1 Locus
Stress Granule Assembly Can Facilitate but Is Not Required for TDP-43 Cytoplasmic Aggregation
Revisiting the Concept of Stress in the Prognosis of Solid Tumors: A Role for Stress Granules Proteins?
Stable tRNA halves can be sorted into extracellular vesicles and delivered to recipient cells in a concentration-dependent manner
RNA G-Quadruplexes in Biology: Principles and Molecular Mechanisms
Stress-specific differences in assembly and composition of stress granules and related foci
G3BP–Caprin1–USP10 complexes mediate stress granule condensation and associate with 40S subunits
YB-1 regulates tiRNA-induced Stress Granule formation but not translational repression
The Long Non-coding RNA HIF1A-AS2 Facilitates the Maintenance of Mesenchymal Glioblastoma Stem-like Cells in Hypoxic Niches
Systematic reconstruction of RNA functional motifs with high-throughput microfluidics