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GAS1

Gene
GAS1
Protein
Germacrene A synthase 1
Organism
Helianthus annuus
Length
559 amino acids
Function
Sesquiterpene synthase involved in germacrene A biosynthesis.
Similarity
Belongs to the terpene synthase family.
Mass
64.383 kDa
Sequence
MAAVGASATPLTNTKSTAEPVRPVANFPPSVWGDLFLSFSLDKSIMEEYAEAMEEPKEQVRRLILDPTMDSNKKLSLIYTVHRLGLTYMFLKEIEAQLDRLFKEFNLEDYVELDLYTISINFQAFRHLGYKLPCDVFNKFKNDDSTTFKESITGDVRGMLGLYESAQLRLKGENILDEASAFAETKLKSLVNTLEGSLAQQVKQSLRRPFHQGMPMVEARLYFSNYQEECSAHDSILKLAKLHFNYLQLQQKEELRIVSQWWKDMRFQETTPYIRDRVPEIYLWILGLYFEPRYSLARIIATKITLFLVVLDDTYDAYATIEEIRLLTDAINRWDISAMNQIPEYIRPFYKILLDEYAELEKQLAKEGRANSVIASKEAFQDIARGYLEEAEWTNSGYVASFPEYMKNGLITSAYNVISKSALVGMGEIVSEDALVWYESHPQILQASELISRLQDDVMTYQFERERGQSATGVDSYIKTYGVSEKVAIDELKKMIENAWKEINEGCLKPREVSMDLLAPILNLARMIDVVYRYDDGFTFPGKTLKEYITLLFVGSSPM

Gene
GAS1
Protein
1,3-beta-glucanosyltransferase GAS1
Organism
Saccharomyces cerevisiae (strain ATCC 204508 / S288c)
Length
559 amino acids
Function
Splits internally a 1,3-beta-glucan molecule and transfers the newly generated reducing end (the donor) to the non-reducing end of another 1,3-beta-glucan molecule (the acceptor) forming a 1,3-beta linkage, resulting in the elongation of 1,3-beta-glucan chains in the cell wall. Involved in cell wall biosynthesis and morphogenesis.
Similarity
Belongs to the glycosyl hydrolase 72 family.
Mass
59.582 kDa
Sequence
MLFKSLSKLATAAAFFAGVATADDVPAIEVVGNKFFYSNNGSQFYIRGVAYQADTANETSGSTVNDPLANYESCSRDIPYLKKLNTNVIRVYAINTTLDHSECMKALNDADIYVIADLAAPATSINRDDPTWTVDLFNSYKTVVDTFANYTNVLGFFAGNEVTNNYTNTDASAFVKAAIRDVRQYISDKNYRKIPVGYSSNDDEDTRVKMTDYFACGDDDVKADFYGINMYEWCGKSDFKTSGYADRTAEFKNLSIPVFFSEYGCNEVTPRLFTEVEALYGSNMTDVWSGGIVYMYFEETNKYGLVSIDGNDVKTLDDFNNYSSEINKISPTSANTKSYSATTSDVACPATGKYWSAATELPPTPNGGLCSCMNAANSCVVSDDVDSDDYETLFNWICNEVDCSGISANGTAGKYGAYSFCTPKEQLSFVMNLYYEKSGGSKSDCSFSGSATLQTATTQASCSSALKEIGSMGTNSASGSVDLGSGTESSTASSNASGSSSKSNSGSSGSSSSSSSSSASSSSSSKKNAATNVKANLAQVVFTSIISLSIAAGVGFALV

Gene
gas1
Protein
1,3-beta-glucanosyltransferase gas1
Organism
Schizosaccharomyces pombe (strain 972 / ATCC 24843)
Length
542 amino acids
Function
Splits internally a 1,3-beta-glucan molecule and transfers the newly generated reducing end (the donor) to the non-reducing end of another 1,3-beta-glucan molecule (the acceptor) forming a 1,3-beta linkage, resulting in the elongation of 1,3-beta-glucan chains in the cell wall.
Similarity
Belongs to the glycosyl hydrolase 72 family.
Mass
58.116 kDa
Sequence
MKFSILSLAVAGLVGLAKASVSPVHVDGRYFFYENGTRFFLKGIAYQPNVDDSDTEGTLFVDPLSDGDACSRDVPYFQELSVNAIRVYAVNASLDHSACMQAFQDAGIYVLSDLAQPYEAISSSDPTWTVDLFSRYTEVVDSLAPYDNMLGFIAGNEVIQNNTNTNAAAFVKAAVRDVKSYIKSSGYRQIPVGYSTNDEEVTRDPMAYYFDCGDDDDHVDFYGINIYEWCGDSDFVSSGYQERTEEFSNMTVPMIFSEFGCIEVRPRTFSEIVALFSDNMTDVWSGGIAYQYFESENEYGVVTVSGDSVSTLTDFPYLSSRYASVIPSASYESTMSATLTATMSCQATNSAWMAATSLPPTPSEAVCECMDSTRSCVINDDVSSDDYSDLFSYVCNEISCDGITANGTYPGQYGSYSYCDAKQQLDYVLDAYYSAKGDCDFSGSATLVSASSATGTCASYLSAAGSSATNAISLTADSNAVSRNSSASTMSTSYTSGSGSSNSSGSSSNSSSKSSSGASSYNLNMVITFLSVVIGGTAVLFI

Gene
GAS1
Protein
Growth arrest-specific protein 1
Organism
Homo sapiens
Length
345 amino acids
Function
Specific growth arrest protein involved in growth suppression. Blocks entry to S phase. Prevents cycling of normal and transformed cells.
Mass
35.693 kDa
Sequence
MVAALLGGGGEARGGTVPGAWLCLMALLQLLGSAPRGSGLAHGRRLICWQALLQCQGEPECSYAYNQYAEACAPVLAQHGGGDAPGAAAAAFPASAASFSSRWRCPSHCISALIQLNHTRRGPALEDCDCAQDENCKSTKRAIEPCLPRTSGGGAGGPGAGGVMGCTEARRRCDRDSRCNLALSRYLTYCGKVFNGLRCTDECRTVIEDMLAMPKAALLNDCVCDGLERPICESVKENMARLCFGAELGNGPGSSGSDGGLDDYYDEDYDDEQRTGGAGGEQPLDDDDGVPHPPRPGSGAAASGGRGDLPYGPGRRSSGGGGRLAPRGAWTPLASILLLLLGPLF

Gene
Gas1
Protein
Growth arrest-specific protein 1
Organism
Mus musculus
Length
343 amino acids
Function
Specific growth arrest protein involved in growth suppression. Blocks entry to S phase. Prevents cycling of normal and transformed cells.
Mass
35.694 kDa
Sequence
MLAALLGGAGARTGTLPGALLCLMALLQLLCSAPRGSGLAHGRRLICWQALLQCQGEPDCSYAYSQYAEACAPVLAQRGGADAPGPAGAFPASAASSPRWRCPSHCISALIQLNHTRRGPALEDCDCAQDEHCRSTKRAIEPCLPRTSSVGPGAGAGSVMGCTEARRRCDRDSRCNLALSRYLAYCGKLFNGLRCTDECRAVIEDMLAVPKAALLNDCVCDGLERPICESVKENMARLCFGPDASNGPGSSGSDGGLDDYYDEEYDDEQRAGAAGGEQPLDDDDGLARPGGGAAAAGGRGDLPHGPGRRSSSSGSGGHWANRSAWTPFACLLLLLLLLLGSHL