bioRxiv Science⌕ Search

Biology subjects

Chen, W.-A.

Publications and source records attributed to Chen, W.-A..

3 recordsLinked to original sources

GDF3 is an endogenous antagonist of the ActE-ALK7/ACVR2 pathway in adipocytes

Metabolic dysfunction-associated steatotic liver disease (MASLD) and steatohepatitis (MASH) arise, in part, from excessive free fatty acid flux from adipose tissue to the liver. Activin E (ActE, encoded by INHBE) suppresses adipocyte lipolysis through the type I receptor ALK7 (ACVR1C). Loss-of-function variants in INHBE and ACVR1C reduce waist-to-hip ratio in humans, yet genetic knockouts in mice produce insulin resistance and hepatic steatosis, suggesting discrepancies between human and mouse biology. We identify GDF3, a TGF-{beta} superfamily ligand upregulated in obese adipose tissue, as the principal endogenous antagonist of ActE/ALK7 signaling. Human transcriptomic datasets reveal coordinated dysregulation: hepatic INHBE expression and circulating ActE protein are elevated in obesity, while adipose ACVR1C is downregulated and GDF3 is reciprocally upregulated. Using ALK7-selective reporter assays, we show GDF3 inhibits ActE-driven SMAD2/3 signaling as a competitive antagonist rather than the weak agonist previously proposed. ActE suppressed beta-adrenergic-stimulated lipolysis in mouse and human adipocytes and primary human adipose tissue; GDF3 overexpression abolished this effect. In diet-induced obese mice, inducible Gdf3 deletion reduced adipose lipolysis, resolved hepatic steatosis and fibrosis, and improved insulin sensitivity, benefits abolished by Inhbe knockdown, confirming dependence on ActE signaling. Predicted loss-of-function variants in INHBE show only nominal, WHR-dependent associations with type 2 diabetes risk, potentially confounded by hematological effects on HbA1c. Gdf3 deficiency synergized with the clinical-stage anti-activin receptor antibody Bimagrumab to amplify fat-mass loss and improve glucose homeostasis in multiple MASH models. These findings establish GDF3 as an endogenous antagonist of ActE-ALK7 signaling and nominate GDF3 inhibition as a therapeutic strategy for MASLD/MASH.

physiology↗

The Consortium for Genomic Diversity, Ancestry, and Health in Colombia (CODIGO): building local capacity in genomics, bioinformatics, and precision medicine

The Consortium for Genomic Diversity, Ancestry, and Health in Colombia (CODIGO) aims to build a community of Colombian researchers in support of local capacity in genomics, bioinformatics, and precision health. Here, we present the first CODIGO data release and the consortium web platform, including annotations for more than 95 million genetic variants from 1,441 samples representing 14 populations from across the country. CODIGO samples show a wide range of African (16.7%), European (50.6%), and Indigenous American (32.8%) genetic ancestry components, with five distinct ancestry clusters. Thousands of ancestry-enriched variants, with divergent allele frequencies across clusters, show pharmacogenomic and clinical genetic associations. Examples include African ancestry-enriched variants associated with fast metabolism of the immunosuppressive drug tacrolimus and malaria resistance and European ancestry-enriched variants associated with nicotine dependence and hereditary hemochromatosis. CODIGO reveals the nexus between ancestry and health in Colombia and underscores the utility of collaborative genome sequence analysis efforts.

genomics↗

Genomic Analyses Suggest No Risk of Vancomycin Resistance Transfer by Strain VE202-06

In 2016, the US Food and Drug Administration published guidance for the early development of live biotherapeutic products (LBPs)1. Of particular importance is the characterization of LBP strains and the potential transfer of antimicrobial resistance (AMR) genes to relevant microbial organisms in the recipients microbiota. Van der Lelie et al2, make unsupported claims that the LBP strain VE202-06 encodes a transferable vancomycin resistance element. Here we provide our analysis of the potential transfer of AMR by strain VE202-06. These data indicate that strain VE202-06 has no risk of transferring AMR to relevant microbial organisms.

genomics↗