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Biology subjects

hu, w.

Publications and source records attributed to hu, w..

2 recordsLinked to original sources

A perturbation proteomics-based foundation model for virtual cell construction

Building a virtual cell requires comprehensive understanding of protein network dynamics of a cell which necessitates large-scale perturbation proteome data and intelligent computational models learned from the proteome data corpus. Here, we generate a large-scale dataset of over 38 million perturbed protein measurements in breast cancer cell lines and develop a neural ordinary differential equation-based foundation model, namely ProteinTalks. During pretraining, ProteinTalks gains a fundamental understanding of cellular protein network dynamics. Our model encodes protein networks and exhibits consistently improved predictive accuracy across various downstream tasks, highlighting its generalization capabilities and adaptability. In cancer cells, ProteinTalks robustly predicts drug efficacy and synergy, identifies novel drug combinations, and, through its interpretability, uncovers resistance-associated proteins. When applied to more complex system, patient-derived tumor xenografts, ProteinTalks predicts potential responses to drugs. Its integration with clinical patient data enhances the prognosis prediction of breast cancer patients. Collectively, we present a foundational model based on proteome dynamics, offering potential for various downstream applications, including drug discovery, and providing a basis for developing virtual cells.

systems biology↗

Adipocyte microRNA-802 promotes adipose tissue inflammation and insulin resistance by modulating macrophages in obesity

Adipose tissue inflammation is now considered to be a key process underlying metabolic diseases in obese individuals. However, it remains unclear how adipose inflammation is initiated and maintained or the mechanism by which inflammation develops. We found that microRNA-802 (miR-802) expression in adipose tissue is progressively increased with the development of dietary obesity in obese mice and humans. The increasing trend of miR-802 preceded the accumulation of macrophages. Adipose tissue-specific knockout of miR-802 lowered macrophage infiltration and ameliorated systemic insulin resistance. Conversely, the specific overexpression of miR-802 in adipose tissue aggravated adipose inflammation in mice fed a high-fat diet. Mechanistically, miR-802 activates noncanonical and canonical NF-{kappa}B pathways by targeting its negative regulator, TRAF3. Next, NF-{kappa}B orchestrated the expression of chemokine and SREBP1, which translated into strong recruitment and M1-like polarization of macrophages. Our findings indicate that miR-802 endows adipose tissue with the ability to recruit and polarize macrophages, which underscores miR-802 as an innovative and attractive candidate for miRNA-based immune therapy for adipose inflammation.

immunology↗