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KCNK7

Gene
KCNK7
Protein
Potassium channel subfamily K member 7
Organism
Homo sapiens
Length
307 amino acids
Function
Probable potassium channel subunit. No channel activity observed in vitro as protein remains in the endoplasmic reticulum. May need to associate with an as yet unknown partner in order to reach the plasma membrane.
Similarity
Belongs to the two pore domain potassium channel (TC 1.A.1.8) family.
Mass
31.947 kDa
Sequence
MGGLRPWSRYGLLVVAHLLALGLGAVVFQALEGPPACRLQAELRAELAAFQAEHRACLPPGALEELLGTALATQAHGVSTLGNSSEGRTWDLPSALLFAASILTTTGYGHMAPLSPGGKAFCMVYAALGLPASLALVATLRHCLLPVLSRPRAWVAVHWQLSPARAALLQAVALGLLVASSFVLLPALVLWGLQGDCSLLGAVYFCFSSLSTIGLEDLLPGRGRSLHPVIYHLGQLALLGYLLLGLLAMLLAVETFSELPQVRAMGKFFRPSGPVTAEDQGGILGQDELALSTLPPAAPASGQAPAC

Gene
Kcnk7
Protein
Potassium channel subfamily K member 7
Organism
Mus musculus
Length
307 amino acids
Function
Probable potassium channel subunit. No channel activity observed in vitro as protein remains in the endoplasmic reticulum. May need to associate with an as yet unknown partner in order to reach the plasma membrane.
Similarity
Belongs to the two pore domain potassium channel (TC 1.A.1.8) family.
Mass
32.199 kDa
Sequence
MGSLKPWARYLLLLMAHLLAMGLGAVVLQALEGPPARHLQAQVQAELASFQAEHRACLPPEALEELLGAVLRAQAHGVSSLGNSSETSNWDLPSALLFTASILTTTGYGHMAPLSSGGKAFCVVYAALGLPASLALVAALRHCLLPVFSRPGDWVAIRWQLAPAQAALLQAAGLGLLVACVFMLLPALVLWGVQGDCSLLEAIYFCFGSLSTIGLGDLLPAHGRGLHPAIYHLGQFALLGYLLLGLLAMLLAVETFSELPQVRAMVKFFGPSGSRTDEDQDGILGQDELALSTVLPDAPVLGPTTPA