Area of research
Cancer Research · Molecular Biology
Research interest
Research focused on Cell biology and Spermiogenesis, with related work in Piwi-interacting RNA, Protamine, Spermatid. Notable publications include 'YTHDF2 destabilizes m6A-containing RNA through direct recruitment of the CCR4–NOT deadenylase complex', 'Pachytene piRNAs instruct massive mRNA elimination during late spermiogenesis', and 'A novel miR‐155/miR‐143 cascade controls glycolysis by regulating hexokinase 2 in breast cancer cells'.
[Real world clinical data analysis of fuzuloparib for the treatment of ovarian epithelial cancer patients].
The PIWI-specific insertion module helps load longer piRNAs for translational activation essential for male fertility
LLPS of FXR1 drives spermiogenesis by activating translation of stored mRNAs
Deficiency of X-linked TENT5D causes male infertility by disrupting the mRNA stability during spermatogenesis
Initiation of Parental Genome Reprogramming in Fertilized Oocyte by Splicing Kinase SRPK1-Catalyzed Protamine Phosphorylation
The Alazami Syndrome-Associated Protein LARP7 Guides U6 Small Nuclear RNA Modification and Contributes to Splicing Robustness
LARP7-Mediated U6 snRNA Modification Ensures Splicing Fidelity and Spermatogenesis in Mice
hENT1 reverses chemoresistance by regulating glycolysis in pancreatic cancer
A Translation-Activating Function of MIWI/piRNA during Mouse Spermiogenesis
The histone modification reader ZCWPW1 is required for meiosis prophase I in male but not in female mice
PHF7 is a novel histone H2A E3 ligase prior to histone-to-protamine exchange during spermiogenesis
Ubiquitination-Deficient Mutations in Human Piwi Cause Male Infertility by Impairing Histone-to-Protamine Exchange during Spermiogenesis
A sequence of 28S rRNA-derived small RNAs is enriched in mature sperm and various somatic tissues and possibly associates with inflammation
MicroRNA regulation and analytical methods in cancer cell metabolism
YTHDF2 destabilizes m6A-containing RNA through direct recruitment of the CCR4–NOT deadenylase complex
Structural insights into Rhino-mediated germline piRNA cluster formation
Pachytene piRNAs instruct massive mRNA elimination during late spermiogenesis
Hepatic miR-378 targets p110α and controls glucose and lipid homeostasis by modulating hepatic insulin signalling
Thyroid hormone regulates muscle fiber type conversion via miR-133a1
A novel miR‐155/miR‐143 cascade controls glycolysis by regulating hexokinase 2 in breast cancer cells