Pradeep Sindhu is an Indian-American business executive. He is the chairman, chief development officer (CDO) and co-founder of data center technology company Fungible. Previously, he co-founded Juniper Networks, where he was the chief scientist and CEO until 1996.
"}{"slip": { "id": 25, "advice": "Never buy cheap cling film."}}
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{"fact":"Cats' hearing is much more sensitive than humans and dogs.","length":58}
{"fact":"Cats only use their meows to talk to humans, not each other. The only time they meow to communicate with other felines is when they are kittens to signal to their mother.","length":170}
{"type":"standard","title":"Cyclic nucleotide–gated ion channel","displaytitle":"Cyclic nucleotide–gated ion channel","namespace":{"id":0,"text":""},"wikibase_item":"Q425087","titles":{"canonical":"Cyclic_nucleotide–gated_ion_channel","normalized":"Cyclic nucleotide–gated ion channel","display":"Cyclic nucleotide–gated ion channel"},"pageid":1349300,"thumbnail":{"source":"https://upload.wikimedia.org/wikipedia/commons/thumb/3/39/Signal_transduction_in_sea-urchin_sperm_chemotaxis.jpg/330px-Signal_transduction_in_sea-urchin_sperm_chemotaxis.jpg","width":320,"height":123},"originalimage":{"source":"https://upload.wikimedia.org/wikipedia/commons/3/39/Signal_transduction_in_sea-urchin_sperm_chemotaxis.jpg","width":2006,"height":772},"lang":"en","dir":"ltr","revision":"1264629290","tid":"b4ed1620-c091-11ef-941b-2aae1e4805f9","timestamp":"2024-12-22T18:22:31Z","description":"Family of transport proteins","description_source":"local","content_urls":{"desktop":{"page":"https://en.wikipedia.org/wiki/Cyclic_nucleotide%E2%80%93gated_ion_channel","revisions":"https://en.wikipedia.org/wiki/Cyclic_nucleotide%E2%80%93gated_ion_channel?action=history","edit":"https://en.wikipedia.org/wiki/Cyclic_nucleotide%E2%80%93gated_ion_channel?action=edit","talk":"https://en.wikipedia.org/wiki/Talk:Cyclic_nucleotide%E2%80%93gated_ion_channel"},"mobile":{"page":"https://en.m.wikipedia.org/wiki/Cyclic_nucleotide%E2%80%93gated_ion_channel","revisions":"https://en.m.wikipedia.org/wiki/Special:History/Cyclic_nucleotide%E2%80%93gated_ion_channel","edit":"https://en.m.wikipedia.org/wiki/Cyclic_nucleotide%E2%80%93gated_ion_channel?action=edit","talk":"https://en.m.wikipedia.org/wiki/Talk:Cyclic_nucleotide%E2%80%93gated_ion_channel"}},"extract":"Cyclic nucleotide–gated ion channels or CNG channels are ion channels that function in response to the binding of cyclic nucleotides. CNG channels are nonselective cation channels that are found in the membranes of various tissue and cell types, and are significant in sensory transduction as well as cellular development. Their function can be the result of a combination of the binding of cyclic nucleotides and either a depolarization or a hyperpolarization event. Initially discovered in the cells that make up the retina of the eye, CNG channels have been found in many different cell types across both the animal and the plant kingdoms. CNG channels have a very complex structure with various subunits and domains that play a critical role in their function. CNG channels are significant in the function of various sensory pathways including vision and olfaction, as well as in other key cellular functions such as hormone release and chemotaxis. CNG channels have also been found to exist in prokaryotes, including many spirochaeta, though their precise role in bacterial physiology remains unknown.","extract_html":"
Cyclic nucleotide–gated ion channels or CNG channels are ion channels that function in response to the binding of cyclic nucleotides. CNG channels are nonselective cation channels that are found in the membranes of various tissue and cell types, and are significant in sensory transduction as well as cellular development. Their function can be the result of a combination of the binding of cyclic nucleotides and either a depolarization or a hyperpolarization event. Initially discovered in the cells that make up the retina of the eye, CNG channels have been found in many different cell types across both the animal and the plant kingdoms. CNG channels have a very complex structure with various subunits and domains that play a critical role in their function. CNG channels are significant in the function of various sensory pathways including vision and olfaction, as well as in other key cellular functions such as hormone release and chemotaxis. CNG channels have also been found to exist in prokaryotes, including many spirochaeta, though their precise role in bacterial physiology remains unknown.
"}