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SSA1

Gene
ssa1
Protein
Serotype-specific antigen 1
Organism
Mannheimia haemolytica
Length
932 amino acids
Similarity
Belongs to the peptidase S8 family.
Mass
103.59 kDa
Sequence
MYKIKHSFNKTLIAISISSFLSIAYATESIENPQPIIQLSESLSSKYSGKGVKLGVMDEGFMVKHPRHSSHLHPLIHQLTTPEGEVRIYDASYPQFEVNPVEKEDGIDLIPSLETHGAGVAGIIAAQADKTLGDGYSGGIAKGAELYVATKSYKRTLEKVIQDAKKELENAKDEEDEKTPSLDQMAKNDLLASKEKEMAIERAEWASGLNKLLDNNVFAINNSWNPFSISDDINVVDKFYQSIKQNKHNPLLQAIMRAKNSNTLLVFAAGNESKKQPGVMALLPRYFPELEKNLISAVAVDKEQKIASYSNHCGASKNWCVAAPGDLHVLIGVADEHKKPQYGLTKEQGTSFSAPAITASLAVLKERFDYLTATQIRDTLLTTATDLGEKGVDNVYGWGLINLKKAVNGPTQFLNDETITVTRDDHWSNPLASQFKITKKGDKSLHLDGENHLDTVAVEEGRLALNGKTKVKTISNHANLAVNGTEVEQNYSSSGQSQLEVLGKSGLIANAQANIHLAGSLKIDDKLTEKTEAGDVSATVVQLKDKATYQGGFTQLVENENLAKRGLIQDLYFKESEIIAKVNKPLTDEKADTNGQAGLALLNALRTTPIAYRRSWYNGWLQSALEQRKLDNLHYAVSNNIYADSLELLRSQNRKGLTQAQQHLFTAYHTPLQTTVWAEHLNQKQSASSKHTDVKHHQSQLGVNHKLADKTVLSATLSQQKNRLEKPFAQATLKQTALNIGLRYHLDNAWFSEATLQFARQKYQQSRRFASHQLGTAETRGSTLGGEMRIGYQFMPNQWIIEPSLGVQWIQTKMNGLNESGELATQTAAMRYRDVNIVPSVKLQRTFQLEQGSISPYIGLNYLHRLNGKITKITSNIAGKTLHSEATTKRNRQLNGEVGVKLHYKNWFTAMNLDYSRVKSCKPIWLESKCWL

Gene
SSA1
Protein
Heat shock protein SSA1
Organism
Candida albicans (strain SC5314 / ATCC MYA-2876)
Length
656 amino acids
Function
May play a role in the transport of polypeptides both across the mitochondrial membranes and into the endoplasmic reticulum.
Similarity
Belongs to the heat shock protein 70 family.
Mass
70.324 kDa
Sequence
MSKAVGIDLGTTYSCVAHFANDRVEIIANDQGNRTTPSFVAFTDTERLIGDAAKNQAAMNPANTVFDAKRLIGRKFDDPEVINDAKHFPFKVIDKAGKPVIQVEYKGETKTFSPEEISSMVLTKMKEIAEGYLGSTVKDAVVTVPAYFNDSQRQATKDAGTIAGLNVLRIINEPTAAAIAYGLDKKGSRGEHNVLIFDLGGGTFDVSLLAIDEGIFEVKATAGDTHLGGEDFDNRLVNFFIQEFKRKNKKDISTNQRALRRLRTACERAKRTLSSSAQTSIEIDSLYEGIDFYTSITRARFEELCADLFRSTLDPVGKVLADAKIDKSQVEEIVLVGGSTRIPKIQKLVSDFFNGKELNKSINPDEAVAYGAAVQAAILTGDTSSKTQDILLLDVAPLSLGIETAGGIMTKLIPRNSTIPTKKSETFSTYADNQPGVLIQVFEGERAKTKDNNLLGKFELSGIPPAPRGVPQIEVTFDIDANGILNVSALEKGTGKTQKITITNDKGRLSKEEIDKMVSEAEKFKEEDEKEAARVQAKNQLESYAYSLKNTINDGEMKDKIGADDKEKLTKAIDETISWLDASQAASTEEYEDKRKELESVANPIISGAYGAAGGAPGGAGGFPGAGGFPGGAPGAGGPGGATGGESSGPTVEEVD

Gene
ssa1
Protein
Probable heat shock protein ssa1
Organism
Schizosaccharomyces pombe (strain 972 / ATCC 24843)
Length
644 amino acids
Similarity
Belongs to the heat shock protein 70 family.
Mass
70.143 kDa
Sequence
MSKSIGIDLGTTYSCVGHFSNNRVEIIANDQGNRTTPSYVAFTDTERLIGDAAKNQVAMNPHNTIFDAKRLIGRRFNDPEVQSDMKHWPFKVIEKDGKPLIQVEFKGETKTFTPEEISSMVLLKMRESAEAFLGGKVTDAVVTVPAYFNDSQRQATKDAGLIAGLNVLRIINEPTAAAIAYGLDRSNQHETNVLIFDLGGGTFDVSLLTIEEGIFEVKATAGDTHLGGEDFDSRLVNHFAQEFKRKNKKDITGNARAVRRLRTACERAKRTLSSSAQASIEIDSLYEGIDFYTSITRARFEELCADLFRNTMEPVEKVLRDSKIDKSSVNEIVLVGGSTRIPRIQKLVSDFFNGKEPCKSINPDEAVAYGAAVQAAILVGDTSEKTQDLLLLDVAPLSLGIETAGGVMTPLIKRNTTIPTKKSEVFSTYADNQPGVLIQVFEGERARTKDCNLLGKFELSGIPPAPRGVPQIEVTFDVDANGILNVSALEKGTGKTQKITITNDKGRLSKEEIDRMVSEAEKYKAEDEAETSRIQAKNHLESYAYSLRNSLDDPNLKDKVDASDKEAIDKAVKETIEWLDHNTTAAKDEYEDKQKELEGVANPIMAKIYQAGGAPGGAPGGMPGGAPGGAPGGADNGPEVEEVD

Gene
SSA1
Protein
Heat shock protein SSA1
Organism
Saccharomyces cerevisiae (strain ATCC 204508 / S288c)
Length
642 amino acids
Function
May play a role in the transport of polypeptides both across the mitochondrial membranes and into the endoplasmic reticulum. A functional difference between SSA1 and SSA2 proteins is expected. SSA1 can participate in the ATP-dependent disassembly of clathrin-coated vesicles.
Similarity
Belongs to the heat shock protein 70 family.
Mass
69.657 kDa
Sequence
MSKAVGIDLGTTYSCVAHFANDRVDIIANDQGNRTTPSFVAFTDTERLIGDAAKNQAAMNPSNTVFDAKRLIGRNFNDPEVQADMKHFPFKLIDVDGKPQIQVEFKGETKNFTPEQISSMVLGKMKETAESYLGAKVNDAVVTVPAYFNDSQRQATKDAGTIAGLNVLRIINEPTAAAIAYGLDKKGKEEHVLIFDLGGGTFDVSLLSIEDGIFEVKATAGDTHLGGEDFDNRLVNHFIQEFKRKNKKDLSTNQRALRRLRTACERAKRTLSSSAQTSVEIDSLFEGIDFYTSITRARFEELCADLFRSTLDPVEKVLRDAKLDKSQVDEIVLVGGSTRIPKVQKLVTDYFNGKEPNRSINPDEAVAYGAAVQAAILTGDESSKTQDLLLLDVAPLSLGIETAGGVMTKLIPRNSTIPTKKSEIFSTYADNQPGVLIQVFEGERAKTKDNNLLGKFELSGIPPAPRGVPQIEVTFDVDSNGILNVSAVEKGTGKSNKITITNDKGRLSKEDIEKMVAEAEKFKEEDEKESQRIASKNQLESIAYSLKNTISEAGDKLEQADKDTVTKKAEETISWLDSNTTASKEEFDDKLKELQDIANPIMSKLYQAGGAPGGAAGGAPGGFPGGAPPAPEAEGPTVEEVD