Explore the molecular mechanisms behind memory persistence and forgetting, including cutting-edge research on IGF2 genes, K63 polyubiquitination, and CRISPR-based memory restoration.
Discover how heavy metals like lead, mercury, and arsenic sabotage cellular functions through molecular mimicry, oxidative stress, and DNA damage.
Discover how KIFC1, a specialized motor protein, sculpts sperm cells during development in the large yellow croaker and its implications for reproduction and aquaculture.
Explore the fascinating world of genetics and molecular biology, from DNA replication to CRISPR gene editing and the groundbreaking Meselson-Stahl experiment.
Discover how Wall-Associated Kinases enable trees to sense gravity and straighten themselves through the remarkable process of gravitropism.
Explore the molecular structure, evolutionary origin, and medical significance of the human cardiac actin gene - the fundamental blueprint for heart muscle contraction.
Exploring the molecular mechanisms behind cataract formation and the latest research breakthroughs in preventing and reversing lens cloudiness.
Explore the molecular mechanisms behind chronic kidney disease and how glomerular cell dysfunction leads to filter failure in this comprehensive scientific overview.
Explore how single-molecule experiments in vitro and in silico are revolutionizing our understanding of biological processes at the most fundamental level.
Discover how biologist David Velásquez-Carvajal uncovered the molecular mechanisms behind neural tube closure through computational modeling and marine biology research.