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fang, t.

Publications and source records attributed to fang, t..

2 recordsLinked to original sources

miRstring: An RNA language model enables mature miRNA decoding and artificial small RNA design across species

MicroRNAs (miRNAs) are processed from structured precursors and subsequently loaded into Argonaute proteins to repress target mRNAs. Yet generalized computational frameworks capable of decoding mature miRNAs from precursor context remain limited, constraining both cross-species annotation and rational artificial miRNA design. Here, we present miRstring, a biogenesis-aware RNA language framework that decodes the four boundaries defining the miRNA/miRNA duplex. Trained on 77,708 miRNA precursors spanning 414 species, miRstring outperforms existing methods under family- and species-held-out evaluations and accurately identifies the first nucleotide of mature miRNAs. Importantly, its attention mechanism highlights the miRNA/ miRNA* boundary sites cleaved by endonucleases, indicating that the model captures biologically meaningful features. Furthermore, we employed miRstring to design optimal pre-miRNA scaffolds for artificial miRNAs and validated its efficacy in repressing target mRNAs. Taken together, miRstring establishes a scalable route from cross-species mature-miRNA annotation to predictive design, enabling artificial intelligence-driven miRNA engineering and extending computational miRNA analysis toward broadly applicable small-RNA biotechnology.

bioinformatics↗

Sub-cellular dynamic investigation of the multi-component drug on the gastric cancer cell BGC823 using Raman spectroscopy

The potential of Raman spectroscopy in anticancer drug study has been demonstrated, yet its ability to character systematic cellular changes caused by multi-component drugs has not been explored. Here we used micro-Raman spectroscopy combined with bright field imaging to study Compound Kushen injection (CKI) at a sub-cellular level including intracellular vesicles(IVs). In our report, CKI caused dysfunction of DNA replication and repair was displayed by Raman spectrum (RS) from the cell nucleus. Meanwhile, the dynamics of CKI induced intracellular vesicles and cell component deconstruction was delineated by RS from the cytoplasm and IVs. The lipids-related biomolecular changes were also presented by the cytoplasm RS: the lipids level in the cytoplasm first descended then uprising. In conclusion, this study validated the mechanism and displayed the dynamics of CKI in treating cancer cells. We proved the capability of subcellular micro-Raman spectroscopy for detecting systematic cellular changes and its application for multi-component drug evaluation.

bioengineering↗