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Biochemical cascade

A series of chemical reactions triggered by a cellular stimulus.

Biochemical cascade

A biochemical cascade, also known as a signaling cascade or signaling pathway, is a series of chemical reactions that occur within a biological cell when initiated by a stimulus. This stimulus, known as a first messenger, acts on a receptor that is transduced to the cell interior through second messengers which amplify the signal and transfer it to effector molecules, causing the cell to respond to the initial stimulus. Most biochemical cascades are series of events, in which one event triggers the next, in a linear fashion.

field
Biochemistry, Cell Biology
known_for
Series of chemical reactions initiated by a stimulus, involving first messengers, receptors, second messengers, and effector molecules
examples
Coagulation cascade, Sonic hedgehog signaling pathway

Lore & Background

Biochemical cascades are essential for cellular communication in multicellular organisms. The process begins with a primary extracellular messenger binding to a transmembrane or nuclear receptor, initiating intracellular signals. Second messengers such as Ca2+ or cAMP then integrate and amplify the signal, activating molecular targets that trigger effectors leading to a cellular response. Two main signal transduction mechanisms exist: via nuclear receptors (for lipophilic ligands like hormones) or via transmembrane receptors (including G protein coupled receptors, tyrosine kinase receptors, serine/threonine kinase receptors, and ligand-gated ion channels).

Reader's Guide

Biochemical cascades are fundamental to understanding how cells respond to their environment. They regulate diverse processes from blood coagulation to embryonic development. The coagulation cascade of secondary hemostasis leads to fibrin formation, initiating blood coagulation. The sonic hedgehog signaling pathway is a key regulator of embryonic development in all bilaterians, and its malfunction can result in diseases like basal cell carcinoma. Recent studies point to hedgehog signaling's role in regulating adult stem cells involved in tissue maintenance and regeneration, and the pathway has been implicated in some cancers. Drugs targeting hedgehog signaling are being actively developed by pharmaceutical companies. The study of these cascades provides insight into both normal physiology and disease mechanisms, offering targets for therapeutic intervention.

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