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nad2

Gene
nad2
Protein
NADH-ubiquinone oxidoreductase chain 2
Organism
Dictyostelium citrinum
Length
491 amino acids
Function
Core subunit of the mitochondrial membrane respiratory chain NADH dehydrogenase (Complex I) that is believed to belong to the minimal assembly required for catalysis. Complex I functions in the transfer of electrons from NADH to the respiratory chain. The immediate electron acceptor for the enzyme is believed to be ubiquinone (By similarity).
Similarity
Belongs to the complex I subunit 2 family.
Mass
55.392 kDa
Sequence
MVCLFENLMNMIKYSIYILPLIILIVLSISIKKDVQRVHIIIQSLKLTLIVIMIVIGIEESIYVKLNGHLIKTELIKLFEYLLLGVSYMIIKMFEEGVTEGKKTKITDEGLILIYSSIIGMLISMEAHNLITLFLSLEISSICFYILALNKNSRKGIEGGLKYYIIGGIATTILLLGIVSIYKSTGSLMYTDLLVIVMENTDDYRIQMGIALIVLGLILKLGIAPFHGWLIDVYEGAGMLMTFYLTITQKLVTLMVLINLYQNLIIYTNAIMFTNGLIILILVTLVVGTIGSLRQQKLIRFIAYSAIVNSALLILMLAGSMSEELMVNSVYYLINYIIGLTVLMSLIMGFLRLNDRGTIEDIYQLKNMWVINMFGAIVYILVLMYLAGLPPMTNFISKILILLPYMVLGRVYLTMLAFFLSVGVMIYYMNLVKIIIIDKVQTHEQGVAELEITSKPTKGGRRIVLGVMWLIFSQLYLDEILNVIKVIVALI

Gene
nad2
Protein
NADH-ubiquinone oxidoreductase chain 2
Organism
Dictyostelium discoideum
Length
488 amino acids
Function
Core subunit of the mitochondrial membrane respiratory chain NADH dehydrogenase (Complex I) that is believed to belong to the minimal assembly required for catalysis. Complex I functions in the transfer of electrons from NADH to the respiratory chain. The immediate electron acceptor for the enzyme is believed to be ubiquinone (By similarity).
Similarity
Belongs to the complex I subunit 2 family.
Mass
54.842 kDa
Sequence
MMFLFENSINMIKYSIYLVPLIIMILLSISIKEDSNRMMLLFKSLKLTIILILVLLTIEEAIYVKLNGHLIKTELITFVEYILLVVSYLIISMFEEGVKEGRKTKITEEALILMYSSLIGMLISMEAHNLITLFLSLEITSICFYILALNKNSRKVSIEGGLKYYIIGGIASTIILLGIVSIYKNTGSLMYTDILVIGMERIGNYQVQMGIALIVLGLIIKLGVAPFHGWLIDTYEGTGMLMTFYLTITQKIVTIIVLINLYKNLITYLNIEVINKGLLVLILVTLIVGTVGSLRQQKVIRFIAYSAIVNSALLILFFVGNNTEELIIYSIYYLINYIIGLAVLINIIIGVVKTKNGGNIEILSELKNIWLNNKVIGISLIIVLIYLAGLPPFTNFISKIILILPLIVEGKIYITMIIFFLTVGIMIYYMNVVKIIIIDKKQEVGVETYKMTKGGSITNIVGGIIWIIISQIYLDEIISIIKIIVAIN

Gene
NAD2
Protein
NADH-ubiquinone oxidoreductase chain 2
Organism
Candida albicans (strain SC5314 / ATCC MYA-2876)
Length
475 amino acids
Function
Core subunit of the mitochondrial membrane respiratory chain NADH dehydrogenase (Complex I) that is believed to belong to the minimal assembly required for catalysis. Complex I functions in the transfer of electrons from NADH to the respiratory chain. The immediate electron acceptor for the enzyme is believed to be ubiquinone (By similarity).
Similarity
Belongs to the complex I subunit 2 family.
Mass
53.32 kDa
Sequence
MVVHITTDNDIGVRITLRRMLLLTLVTYIVYIAYNQRDILHINRLAVLALSFVAYLAWESIGIQYSNFTLLNDWFQYTPGNAPIVLLLIILVITLLVYLTTTQRYITPNKWIALLMLVNLIGLILFPMVNDLIPLYVIIELQSYSLYLLTGVYNKSYNATRAAILYFVTGGIASVLILLSSAEVYEATGLTNLSEISTYYSISGINTWTSFDILLIALVFKMGLAPLHAWSISVYSYAPLYITAYISIVAKVSIMSFIYLNIHLFSTQLLILAFYLSVAVAAYTPLYQVNIKSILAYSGILNFGYLLTAVLTNDNAYYIYIIQYSLTHVTIFLCILAITEYTNKPASYWSPIVNVNQLVVPNKALCIALIVCLFSLIGIPPLPGFYGKYYIIVGLMSNGLNLEALTIIVFSVIATYYYAYIIKQLASNLYNNNTNVIATPINSTLGFIISILMVILITFYMYLPTLLDGLTLLHS

Gene
NAD2
Protein
NADH-ubiquinone oxidoreductase chain 2
Organism
Hyaloraphidium curvatum
Length
428 amino acids
Function
Core subunit of the mitochondrial membrane respiratory chain NADH dehydrogenase (Complex I) that is believed to belong to the minimal assembly required for catalysis. Complex I functions in the transfer of electrons from NADH to the respiratory chain. The immediate electron acceptor for the enzyme is believed to be ubiquinone (By similarity).
Similarity
Belongs to the complex I subunit 2 family.
Mass
47.55 kDa
Sequence
MLYLLLTTTLLMMTWNRYAGRIAFLSLLGYFVIMLNIWLHFGSLSESVTLLFGGGLVRLDESILSALLFILFLGLVIMNRTGDLGWEFHLLLMGGLTGAIYMLTAYDLLLMVVGFEFLNLSTYLILSLYRGTETATLKYLLSSAFYTTLLLLAISFFYGLTGSTGYDALFVQMNYLGGETFLPQILLLGTIAFKLGLVPAHLWVPDVYDGLPMTLLSWMGSVPKAAVLLWLPTIYPLLNQLAPFLLVLSALSFLLSAVLMAAQYKMKRFLAYSAIGHLGFVVAAFAIGDYHAYGYYIFIYMIATLAQFVLLSELPQTELMKQTSVLKDHRALGLGFLVIVLTMASLPPFAGFYAKLLVLFGFLEIGYGIFAVLLILASLRSAAYYLKWIQTTFFSVVPFASAPIQVQYPNLVSFLVTLILPSTLLLLL