Results 171 to 180 of about 173,869 (207)
Some of the next articles are maybe not open access.
2010
Microbes have made numerous contributions to the study of biology and medicine. Those contributions also include many original discovery's in the study of ion channels often thought as the province of neuroscientists or cardiophysiologists. Yeast have long been used as a model organism and TRP channel genes and their transmembrane products touted as ...
Marta, Kaleta, Christopher, Palmer
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Microbes have made numerous contributions to the study of biology and medicine. Those contributions also include many original discovery's in the study of ion channels often thought as the province of neuroscientists or cardiophysiologists. Yeast have long been used as a model organism and TRP channel genes and their transmembrane products touted as ...
Marta, Kaleta, Christopher, Palmer
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2010
A wide range of single- and multi-cellular parasites infect humans and other animals, causing some of the most prevalent and debilitating diseases on the planet. There have been virtually no published studies on the TRP channels of this diverse group of organisms.
Wolstenholme AJ +2 more
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A wide range of single- and multi-cellular parasites infect humans and other animals, causing some of the most prevalent and debilitating diseases on the planet. There have been virtually no published studies on the TRP channels of this diverse group of organisms.
Wolstenholme AJ +2 more
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2017
The transient receptor potential (TRP) ion channels are named after the discovery of the photo-transducted channels in Drosophila. TRPs, activated by various extracellular and intracellular stimuli, play a plethora of physiological and pathological roles.
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The transient receptor potential (TRP) ion channels are named after the discovery of the photo-transducted channels in Drosophila. TRPs, activated by various extracellular and intracellular stimuli, play a plethora of physiological and pathological roles.
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2007
The transient receptor potential (TRP) channels are a large family of proteins with six main subfamilies termed the TRPC (canonical), TRPV (vanilloid), TRPM (melastatin), TRPP (polycystin), TRPML (mucolipin), and TRPA (ankyrin) groups. The sheer number of different TRPs with distinct functions supports the statement that these channels are involved in ...
S E, Jordt, B E, Ehrlich
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The transient receptor potential (TRP) channels are a large family of proteins with six main subfamilies termed the TRPC (canonical), TRPV (vanilloid), TRPM (melastatin), TRPP (polycystin), TRPML (mucolipin), and TRPA (ankyrin) groups. The sheer number of different TRPs with distinct functions supports the statement that these channels are involved in ...
S E, Jordt, B E, Ehrlich
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An Introduction on TRP Channels
2007The transient receptor potential (TRP) ion channels are named after the role of the channels in Drosophila phototransduction. Mammalian TRP channel subunit proteins are encoded by at least 28 genes. TRP cation channels display an extraordinary assortment of selectivities and activation mechanisms, some of which represent previously unrecognized modes ...
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TRP Channels and Thermosensation
2014Several TRP channels exhibit highly temperature-dependent gating properties, which leads to steep changes in depolarising current upon either cooling or heating. Based on this characteristic feature, these so-called "thermoTRPs" have been widely studied with the aim to elucidate their potential key role as thermosensors in the somatosensory system and ...
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Thermosensation and TRP Channels
Somatosensory neurons can sense external temperature by converting sensation of temperature information to neural activity via afferent input to the central nervous system. Various populations of somatosensory neurons have specialized gene expression, including expression of thermosensitive transient receptor potential (TRP) ion channels ...Makoto, Tominaga, Makiko, Kashio
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Structural Pharmacology of TRP Channels
Journal of Molecular Biology, 2021Vera Moiseenkova-Bell
exaly
2010
In the normal human body pancreatic β-cells spend most of the time in a READY mode rather than in an OFF mode. When in the READY mode, normal β-cells can be easily SWITCHED ON by a variety of apparently trivial stimuli. In the READY mode β-cells are highly excitable because of their high input resistance.
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In the normal human body pancreatic β-cells spend most of the time in a READY mode rather than in an OFF mode. When in the READY mode, normal β-cells can be easily SWITCHED ON by a variety of apparently trivial stimuli. In the READY mode β-cells are highly excitable because of their high input resistance.
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Sensory TRP Channels in Three Dimensions
Annual Review of Biochemistry, 2022Melinda Diver +2 more
exaly

