XB-FEAT-984562: Difference between revisions
imported>Xenbase gene generator No edit summary |
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=cry2= | =cry2= | ||
This is the community wiki page for the gene ''cry2'' please feel free to add any information that is relevant to this gene that is not already captured elsewhere in Xenbase | This is the community wiki page for the gene ''cry2'' please feel free to add any information that is relevant to this gene that is not already captured elsewhere in Xenbase | ||
=nomenclature changes= | |||
10/10/2017 | |||
Human name has changed for Entrez Gene: 1408. From cryptochrome circadian clock 2 to cryptochrome circadian regulator 2 | |||
=summary from NCBI= | |||
This gene encodes a flavin adenine dinucleotide-binding protein that is a key component of the circadian core oscillator complex, which regulates the circadian clock. This gene is upregulated by CLOCK/ARNTL heterodimers but then represses this upregulation in a feedback loop using PER/CRY heterodimers to interact with CLOCK/ARNTL. Polymorphisms in this gene have been associated with altered sleep patterns. The encoded protein is widely conserved across plants and animals. Two transcript variants encoding different isoforms have been found for this gene. [provided by RefSeq, Feb 2014] |
Latest revision as of 08:17, 10 October 2017
cry2
This is the community wiki page for the gene cry2 please feel free to add any information that is relevant to this gene that is not already captured elsewhere in Xenbase
nomenclature changes
10/10/2017
Human name has changed for Entrez Gene: 1408. From cryptochrome circadian clock 2 to cryptochrome circadian regulator 2
summary from NCBI
This gene encodes a flavin adenine dinucleotide-binding protein that is a key component of the circadian core oscillator complex, which regulates the circadian clock. This gene is upregulated by CLOCK/ARNTL heterodimers but then represses this upregulation in a feedback loop using PER/CRY heterodimers to interact with CLOCK/ARNTL. Polymorphisms in this gene have been associated with altered sleep patterns. The encoded protein is widely conserved across plants and animals. Two transcript variants encoding different isoforms have been found for this gene. [provided by RefSeq, Feb 2014]