Uncover the body's automatic neural circuits that drive rhythmic movements. Learn how these adaptable systems function and their role in health and recovery.
Explore the cellular pathway of RNA interference, a natural mechanism that regulates gene expression by identifying and silencing specific genetic messages.
Explore how acyl-CoA synthetase enzymes control the use of fatty acids, directing them toward energy production or cellular construction, a balance vital for health.
Explore how the energy of a lightning strike converts inert atmospheric nitrogen into reactive compounds that serve as a natural fertilizer for ecosystems.
Learn how measuring a fluid's internal resistance to flow provides critical data for controlling product formulation, quality, and real-world performance.
Learn how passenger mutations, once seen as neutral genetic noise, offer key insights into a tumor's history, behavior, and potential vulnerabilities to new therapies.
Explore the function of cysteinyl leukotrienes, lipid mediators that influence inflammation and provide a therapeutic pathway for managing allergic disease.
Examine the deep integration of maize into Africa, tracing its path from an introduced crop to a cornerstone of continental food security and livelihoods.
Examines the scientific basis for how the body's response to certain parasites can manifest as symptoms of depression through complex biological pathways.
Explore how the regulated flow of calcium ions acts as a fundamental switch for cellular activity, linking electrical signals to physiological function and disease.
Understand the connection between your environment and sleep quality. Learn how to manage sensory inputs to help your body achieve more restorative rest.
Explore the biochemistry of glowing millipedes and how their light serves as a nocturnal warning about their underlying chemical defenses and ecological role.
Understand the function of the RING domain, a molecular scaffold whose precise structure is essential for orchestrating critical cellular maintenance tasks.