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Organellar TRP channels
by
Zhang, Xiaoli
, Hu, Meiqin
, Yang, Yexin
, Xu, Haoxing
in
Calcium channels
/ Calcium channels (voltage-gated)
/ Calcium ions
/ Channels
/ Genetics
/ Homeostasis
/ Lysosomes
/ Membrane trafficking
/ Membranes
/ Metabotropic receptors
/ Organic chemistry
/ Signal transduction
/ Transduction
/ Transient receptor potential proteins
2018
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Organellar TRP channels
by
Zhang, Xiaoli
, Hu, Meiqin
, Yang, Yexin
, Xu, Haoxing
in
Calcium channels
/ Calcium channels (voltage-gated)
/ Calcium ions
/ Channels
/ Genetics
/ Homeostasis
/ Lysosomes
/ Membrane trafficking
/ Membranes
/ Metabotropic receptors
/ Organic chemistry
/ Signal transduction
/ Transduction
/ Transient receptor potential proteins
2018
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Organellar TRP channels
by
Zhang, Xiaoli
, Hu, Meiqin
, Yang, Yexin
, Xu, Haoxing
in
Calcium channels
/ Calcium channels (voltage-gated)
/ Calcium ions
/ Channels
/ Genetics
/ Homeostasis
/ Lysosomes
/ Membrane trafficking
/ Membranes
/ Metabotropic receptors
/ Organic chemistry
/ Signal transduction
/ Transduction
/ Transient receptor potential proteins
2018
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Journal Article
Organellar TRP channels
2018
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Overview
Mammalian transient receptor potential (TRP) channels mediate Ca2+ flux and voltage changes across membranes in response to environmental and cellular signals. At the plasma membrane, sensory TRPs act as neuronal detectors of physical and chemical environmental signals, and receptor-operated (metabotropic) TRPs decode extracellular neuroendocrine cues to control body homeostasis. In intracellular membranes, such as those in lysosomes, organellar TRPs respond to compartment-derived signals to control membrane trafficking, signal transduction, and organelle function. Complementing mouse and human genetics and high-resolution structural approaches, physiological studies employing natural agonists and synthetic inhibitors have become critical in resolving the in vivo functions of metabotropic, sensory, and organellar TRPs.
Publisher
Nature Publishing Group
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