Area of research
Molecular Biology
Research interest
Research interests include RNA Research and Splicing, RNA and protein synthesis mechanisms, RNA modifications and cancer, and Genomics and Chromatin Dynamics.
Targeting MYC induces lipid droplet accumulation by upregulation of HILPDA in clear cell renal cell carcinoma
A palmitate-rich metastatic niche enables metastasis growth via p65 acetylation resulting in pro-metastatic NF-κB signaling
Digital assay for rapid electronic quantification of clinical pathogens using DNA nanoballs
Structural basis for PoxtA-mediated resistance to phenicol and oxazolidinone antibiotics
Sample-to-answer COVID-19 nucleic acid testing using a low-cost centrifugal microfluidic platform with bead-based signal enhancement and smartphone read-out
Direct detection of SARS-CoV-2 using non-commercial RT-LAMP reagents on heat-inactivated samples
High-resolution analysis of cell-state transitions in yeast suggests widespread transcriptional tuning by alternative starts
Not4 and Not5 modulate translation elongation by Rps7A ubiquitination, Rli1 moonlighting, and condensates that exclude eIF5A
Rapid Detection of COVID-19 Coronavirus Using a Reverse Transcriptional Loop-Mediated Isothermal Amplification (RT-LAMP) Diagnostic Platform
Transcript isoform sequencing reveals widespread promoter-proximal transcriptional termination in Arabidopsis
Detection of SARS-CoV-2 using non-commercial RT-LAMP reagents and raw samples
System-wide Profiling of RNA-Binding Proteins Uncovers Key Regulators of Virus Infection
Transcription-driven chromatin repression of Intragenic transcription start sites
A DHODH inhibitor increases p53 synthesis and enhances tumor cell killing by p53 degradation blockage
Understanding RNP remodelling uncovers RBPs functionally required for viral replication
eIF5A facilitates translation termination globally and promotes the elongation of many non polyproline-specific tripeptide sequences
A global genetic interaction network maps a wiring diagram of cellular function
Principles for RNA metabolism and alternative transcription initiation within closely spaced promoters
Polyadenylation site–induced decay of upstream transcripts enforces promoter directionality
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