ɬÀï·¬

Journal News

Elusive zebrafish enzyme in lipid secretion

Isabel Casas Emily Ulrich
May 1, 2025

Lipids provide energy and structural components during vertebrate development. Lipoproteins aid in lipid transport throughout the body, and synthesized lipids are also stored in lipid droplets within the cell. Embryos of the model organism zebrafish receive nutrients, including lipids, from a maternally deposited yolk through extraembryonic tissue called the yolk syncytial layer, or YSL. Lipid nutrients are released through the production and secretion of lipoproteins rich in triacylglycerol, or TAG. Scientists want to understand which enzymes direct TAG production to lipoproteins for secretion versus lipid droplets for storage.

In a recent Journal of Biological Chemistry , Meredith Wilson from Johns Hopkins University and U.S. and U.K. colleagues investigated the fate of TAG in zebrafish lacking certain TAG synthesis enzymes. They found that zebrafish lacking diacylglycerol acyltransferase-2, or Dgat2, can still produce TAG, but the TAG is channeled for YSL storage instead of secretion, as noted by the excessive accumulation of lipid droplets in the YSL that make it look opaque.

The authors concluded that zebrafish have multiple enzymes to ensure TAG production remains intact. Future studies will identify the enzyme that fails to properly channel TAG to lipoprotein formation for secretion in embryonic development.

Enjoy reading ASBMB Today?

Become a member to receive the print edition four times a year and the digital edition monthly.

Learn more
Isabel Casas

Isabel Casas is the ASBMB’s publications director.

Emily Ulrich

Emily Ulrich is the ASBMB’s science editor.

Get the latest from ASBMB Today

Enter your email address, and we’ll send you a weekly email with recent articles, interviews and more.

Latest in Science

Science highlights or most popular articles

AI in the lab: The power of smarter questions
Essay

AI in the lab: The power of smarter questions

Oct. 14, 2025

An assistant professor discusses AI's evolution from a buzzword to a trusted research partner. It helps streamline reviews, troubleshoot code, save time and spark ideas, but its success relies on combining AI with expertise and critical thinking.

Training AI to uncover novel antimicrobials
Feature

Training AI to uncover novel antimicrobials

Oct. 9, 2025

Antibiotic resistance kills millions, but César de la Fuente’s lab is fighting back. By pairing AI with human insight, researchers are uncovering hidden antimicrobial peptides across the tree of life with a 93% success rate against deadly pathogens.

AI-designed biomarker improves malaria diagnostics
Journal News

AI-designed biomarker improves malaria diagnostics

Oct. 8, 2025

Researchers from the University of Melbourne engineered Plasmodium vivax diagnostic protein with enhanced yield and stability while preserving antibody-binding, paving the way for more reliable malaria testing.

Matrix metalloproteinase inhibitor reduces cancer invasion
Journal News

Matrix metalloproteinase inhibitor reduces cancer invasion

Oct. 8, 2025

Scientists at the Mayo Clinic engineered a TIMP-1 protein variant that selectively inhibits MMP-9 and reduces invasion of triple-negative breast cancer cells, offering a promising tool for targeted cancer research.

Antibiotic sensor directly binds drug in resistant bacteria
Journal News

Antibiotic sensor directly binds drug in resistant bacteria

Oct. 8, 2025

Researchers at Drexel University uncover how the vancomycin-resistant bacterial sensor binds to the antibiotic, offering insights to guide inhibitor design that restores antibiotic effectiveness against hospital-acquired infections.

ApoA1 reduce atherosclerotic plaques via cell death pathway
Journal News

ApoA1 reduce atherosclerotic plaques via cell death pathway

Oct. 1, 2025

Researchers show that ApoA1, a key HDL protein, helps reduce plaque and necrotic core formation in atherosclerosis by modulating Bim-driven macrophage death. The findings reveal new insights into how ApoA1 protects against heart disease.