Results 141 to 150 of about 6,662 (179)
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2017
Accumulating evidence suggest that TRPC channels play critical roles in various aspects of epileptogenesis. TRPC1/4 channels are major contributors to nonsynaptically derived epileptiform burst firing in the CA1 and the lateral septum. TRPC7 channels play a critical role in synaptically derived epileptiform burst firing.
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Accumulating evidence suggest that TRPC channels play critical roles in various aspects of epileptogenesis. TRPC1/4 channels are major contributors to nonsynaptically derived epileptiform burst firing in the CA1 and the lateral septum. TRPC7 channels play a critical role in synaptically derived epileptiform burst firing.
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TRPC Channels: Interacting Proteins
2007TRP channels, in particular the TRPC and TRPV subfamilies, have emerged as important constituents of the receptor-activated Ca2+ influx mechanism triggered by hormones, growth factors, and neurotransmitters through activation ofphospholipase C (PLC).
K, Kiselyov +4 more
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TRPC Channels in Pheromone Sensing
2010Pheromone recognition relies on an amplification cascade that is triggered by pheromone binding to G protein-coupled receptors (GPCR). The first step in translation of GPCR activation by pheromones in the vomeronasal organ and main olfactory epithelium (MOE) into a cellular response is the activation of a transient receptor potential (TRP) family ...
Kirill, Kiselyov +2 more
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TRPC Channels and Alzheimer’s Disease
2017Alzheimer's disease (AD) is the most common neurodegenerative disease in the world. The "amyloid hypothesis" is one of the predominant hypotheses for the pathogenesis of AD. Besides, tau protein accumulation, calcium homeostasis disruption, and glial cell activation are also remarkable features in AD.
Rui, Lu, Qian, He, Junfeng, Wang
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TRPC Channels and Mental Disorders
2017Transient receptor potential canonical (TRPC) channels mediate the influx of different types of cations through the cell membrane and are involved in many functions of the organism. Evidences of involvement of TRPC channels in neuronal development suggest that this family of proteins might play a role in certain neurological disorders.
Karina, Griesi-Oliveira +2 more
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TRPC Channels and Programmed Cell Death
2017Neurotrophins, including nerve growth factor (NGF) and brain-derived neurotrophic factor (BDNF), bind to their high-affinity receptors to promote neuronal survival during brain development. One of the key downstream pathways is the phospholipase C (PLC) pathway, which not only plays a central role in calcium release from internal store but also in ...
Jian, Zhou, Yichang, Jia
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TRPC channels in vascular cell function
Thrombosis and Haemostasis, 2010SummaryThe mammalian transient receptor potential (TRP) superfamily of non-selective cation channels can be divided into six major families. Among them, the “classical” or “canonical” TRPC family is most closely related to Drosophila TRP, the founding member of the superfamily.
A, Dietrich, H, Kalwa, T, Gudermann
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Inositol lipids and TRPC channel activation
Biochemical Society Symposia, 2007The original hypothesis put forth by Bob Michell in his seminal 1975 review held that inositol lipid breakdown was involved in the activation of plasma membrane calcium channels or ‘gates’. Subsequently, it was demonstrated that while the interposition of inositol lipid breakdown upstream of calcium signalling was correct, it was predominantly the ...
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The enigmatic TRPCs: multifunctional cation channels
Trends in Cell Biology, 2004Abstract Canonical transient receptor potential (TRPC) channels are vertebrate homologs of the Drosophila photoreceptor channel. Considerable research has been carried out on the seven members of this family, particularly regarding their possible role in Ca 2+ entry.
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Physiological Functions and Regulation of TRPC Channels
2014The TRP-canonical (TRPC) subfamily, which consists of seven members (TRPC1-TRPC7), are Ca(2+)-permeable cation channels that are activated in response to receptor-mediated PIP2 hydrolysis via store-dependent and store-independent mechanisms. These channels are involved in a variety of physiological functions in different cell types and tissues.
Hwei Ling, Ong +3 more
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