cDNA Clone
CLASP1

Synonyms
MAST1
Plasmid
pGEX6P2 CLASP1 tv3
Parent Plasmid
pGEX6P2
Expressed
GST-3C-CLASP1 tv3
Genbank
NM_001142274.1
Tag
GST
Species
Human
Sequence of Insert
GCGGCCGCAATGGAGCCTCGCATGGAGTCCTGCCTGGCGCAGGTGTTGCAGAAGGATGTGGGGAAACGATTGCAGGTTGGCCAAGAACTGATAGACTATTTCTCAGACAAACAGAAGTCTGCTGACCTTGAGCATGACCAGACCATGTTAGATAAACTTGTGGATGGACTTGCTACCTCTTGGGTGAACTCTAGCAATTACAAGGTGGTTCTGCTGGGCATGGACATCCTGTCCGCCCTGGTGACCCGGCTGCAGGATCGGTTCAAGGCGCAGATCGGCACAGTGCTGCCAAGTCTAATAGACAGACTAGGAGATGCTAAAGACTCTGTGAGGGAGCAGGACCAAACTCTGCTGCTAAAGATCATGGATCAAGCTGCTAATCCCCAGTACGTATGGGACAGAATGCTTGGAGGCTTCAAACACAAGAATTTCCGTACTCGAGAAGGCATCTGTCTCTGCCTTATAGCAACACTCAATGCCTCTGGAGCACAGACTTTAACACTAAGCAAGATTGTGCCACATATATGCAACTTACTTGGAGATCCAAACAGCCAGGTTCGAGATGCAGCAATAAACAGCTTAGTGGAAATTTACAGACATGTAGGAGAACGTGTGAGGGCAGATCTCAGTAAAAAAGGATTGCCACAGTCCCGGTTGAATGTAATTTTTACAAAATTTGATGAAGTCCAGAAATCTGGAAACATGATACAATCTGCAAATGATAAAAATTTCGACGATGAAGATTCTGTGGATGGTAACAGACCTTCCTCTGCTAGTTCTACATCATCCAAGGCTCCACCAAGTTCTCGGAGAAACGTTGGAATGGGAACCACCCGCCGGCTTGGTTCATCCACCCTTGGATCCAAGTCTTCAGCTGCAAAAGAAGGAGCTGGTGCTGTTGATGAAGAGGATTTTATTAAAGCATTTGATGATGTACCTGTAGTACAGATTTATTCCAGCCGAGACCTTGAGGAATCCATAAACAAAATTAGGGAAATATTATCTGATGACAAGCATGATTGGGAGCAGAGAGTAAATGCTCTAAAAAAGATTAGATCTTTACTTTTGGCTGGTGCTGCTGAGTATGATAACTTCTTTCAACATTTGCGTCTTTTGGATGGAGCCTTTAAACTCTCTGCTAAGGACCTGCGGTCTCAGGTAGTGCGGGAGGCTTGTATCACGTTGGGGCATCTGTCATCAGTTCTGGGGAATAAGTTTGACCATGGAGCTGAAGCCATTATGCCAACTATCTTTAATTTAATTCCAAACAGTGCCAAAATTATGGCCACATCTGGTGTTGTAGCTGTTAGGTTAATTATTCGGCACACACACATCCCTAGGTTAATACCTGTCATAACAAGCAACTGTACCTCTAAGTCTGTCGCAGTTAGAAGGCGCTGTTTTGAATTTTTAGATTTGCTTTTACAAGAATGGCAGACACATTCACTAGAACGACACATATCAGTATTAGCTGAAACAATAAAGAAGGGAATACATGATGCTGATTCCGAAGCAAGAATAGAAGCCAGAAAATGTTACTGGGGTTTCCACAGTCACTTCAGCAGAGAAGCAGAGCACTTGTACCACACCTTGGAGTCCTCCTACCAGAAAGCCCTGCAGTCCCACCTGAAGAACTCAGACAGCATAGTGTCTCTGCCTCAGTCAGACCGCTCATCTTCCAGCTCTCAAGAGAGTCTAAATCGTCCGCTGTCTGCCAAAAGAAGTCCTACTGGAAGTACCACATCTAGAGCTTCTACAGTTAGTACCAAATCTGTGTCAACGACTGGGTCCCTCCAGCGATCTCGAAGTGATATTGATGTGAACGCAGCAGCCAGTGCCAAATCCAAAGTCTCCTCATCTTCGGGCACGACGCCTTTCAGCTCTGCAGCAGCTTTGCCTCCAGGGTCATACGCATCCTTAGGTCGGATCCGCACAAGACGGCAAAGCTCTGGGAGTGCCACCAACGTCGCCTCTACACCTGATAACCGGGGCCGCAGTCGCGCTAAAGTGGTTTCACAGTCCCAGCGATCCAGATCTGCTAATCCTGCTGGTGCTGGCAGCCGGTCAAGTTCCCCAGGAAAATTGTTGGGAAGTGGTTATGGTGGACTTACTGGGGGCTCCTCACGAGGCCCACCTGTGACACCGTCTTCAGAAAAGCGAAGCAAGATTCCCAGGAGCCAGGGATGTAGCCGGGAAACAAGTCCAAACCGAATAGGATTAGATCGGTTTGGGCTTGGCCAGCCAGGAAGAATACCTGGTTCTGTGAATGCCATGAGAGTTCTGAGCACAAGTACAGATCTTGAAGCTGCTGTTGCTGATGCTTTGCTGTTAGGAGACTCCAGGAGCAAGAAGAAGCCTGTGAGGAGGAGATATGAGCCGTATGGGATGTATTCTGACGATGATGCCAACAGTGATGCCTCAAGTGTTTGCTCTGAGCGCTCATATGGCTCCAGGAATGGTGGCATTCCCCATTATCTGCGGCAGACTGAGGATGTAGCAGAAGTTCTCAACCACTGTGCTAGTTCAAACTGGTCAGAAAGGAAAGAAGGGCTTCTGGGCCTGCAGAACTTACTGAAGAGCCAAAGAACACTGAGTCGAGTTGAACTGAAAAGGTTGTGTGAGATCTTCACTCGGATGTTTGCTGACCCTCATAGCAAGAGAGTTTTCAGTATGTTTTTGGAGACTCTTGTGGATTTTATAATAATTCATAAGGATGATTTACAAGACTGGCTTTTTGTTCTTCTCACACAATTACTTAAGAAAATGGGAGCAGATTTACTTGGATCTGTGCAAGCAAAAGTTCAAAAGGCTCTAGATGTCACAAGGGACTCCTTTCCATTTGATCAACAATTTAACATTTTGATGAGATTTATTGTGGATCAAACTCAAACTCCAAACCTCAAGGTCAAAGTTGCAATCCTGAAATACATTGAGTCTCTGGCCAGACAGATGGATCCAACAGATTTTGTAAACTCTAGTGAGACAAGGCTTGCTGTTTCTAGAATCATAACCTGGACAACAGAACCAAAGAGTTCAGACGTGAGAAAGGCAGCACAGATTGTGCTAATCTCTCTGTTTGAATTGAATACTCCTGAATTTACCATGTTACTTGGTGCCTTGCCAAAAACATTCCAGGATGGTGCCACCAAACTCCTGCACAACCACCTCAAGAATTCCAGTAACACCAGTGTGGGCTCTCCAAGCAATACGATTGGCCGGACGCCCTCCCGACACACCAGCAGCAGGACCAGCCCCCTGACCTCACCCACCAACTGTTCCCATGGGGGTCTGTCTCCAAGCATGCTGGACTATGATACAGAGAACCTGAACTCTGAAGAAATCTATAGTTCTCTACGTGGAGTTACAGAAGCCATTGAAAAGTTTAGTTTTCGAAGCCAAGAAGATCTGAATGAGCCAATTAAACGAGATGGCAAAAAGGAGTGTGATATTGTGTCCCGCGATGGGGGCGCTGCCTCCCCTGCCACTGAGGGCCGGGGGGGTAGTGAAGTAGAAGGAGGCCGGACAGCTCTGGATAACAAGACCTCACTACTCAACACCCAGCCTCCGCGCGCCTTCCCGGGGCCGCGGGCGCGAGACTACAACCCGTACCCCTACTCAGATGCCATCAACACCTACGACAAGACCGCCCTGAAAGAGGCTGTGTTCGATGACGACATGGAGCAGCTTCGAGACGTGCCCATCGACCATTCTGACCTGGTGGCTGACCTTCTGAAAGAGCTGTCCAACCACAATGAGCGAGTGGAGGAACGGAAGGGAGCCCTGCTGGAGCTGCTCAAGATCACGCGGGAAGACAGCCTTGGTGTCTGGGAGGAGCACTTCAAGACCATTCTGCTCCTGCTGCTGGAGACCCTTGGAGACAAAGACCATTCAATTCGAGCACTGGCGTTAAGAGTTTTGAGGGAAATTCTGAGAAATCAACCAGCAAGATTTAAAAACTACGCCGAGCTGACGATTATGAAGACTCTGGAAGCCCACAAAGACTCCCATAAGGAGGTGGTGAGAGCGGCTGAGGAGGCTGCGTCCACACTGGCCAGTTCCATCCACCCGGAGCAGTGCATCAAGGTGCTCTGCCCCATCATCCAGACGGCCGACTACCCCATCAACCTTGCTGCCATCAAGATGCAGACCAAAGTCGTCGAGAGGATCGCAAAGGAGTCATTGCTGCAGCTCCTTGTCGACATCATCCCAGGCTTGCTGCAGGGTTATGACAACACCGAAAGTAGTGTGCGTAAGGCCAGCGTGTTTTGCTTAGTGGCAATTTATTCCGTAATCGGAGAAGACCTGAAACCTCACCTTGCACAGCTCACAGGGAGCAAGATGAAGCTACTAAACTTATACATAAAGAGGGCCCAGACCACCAACAGCAACAGCAGCTCCTCCTCCGATGTCTCCACGCACAGCTAAGCGGCCGC

Amino Acid Sequence
MSPILGYWKIKGLVQPTRLLLEYLEEKYEEHLYERDEGDKWRNKKFELGL
EFPNLPYYIDGDVKLTQSMAIIRYIADKHNMLGGCPKERAEISMLEGAVL
DIRYGVSRIAYSKDFETLKVDFLSKLPEMLKMFEDRLCHKTYLNGDHVTH
PDFMLYDALDVVLYMDPMCLDAFPKLVCFKKRIEAIPQIDKYLKSSKYIA
WPLQGWQATFGGGDHPPKSDLEVLFQGPLGSPEIPGSTRAAAMEPRMESC
LAQVLQKDVGKRLQVGQELIDYFSDKQKSADLEHDQTMLDKLVDGLATSW
VNSSNYKVVLLGMDILSALVTRLQDRFKAQIGTVLPSLIDRLGDAKDSVR
EQDQTLLLKIMDQAANPQYVWDRMLGGFKHKNFRTREGICLCLIATLNAS
GAQTLTLSKIVPHICNLLGDPNSQVRDAAINSLVEIYRHVGERVRADLSK
KGLPQSRLNVIFTKFDEVQKSGNMIQSANDKNFDDEDSVDGNRPSSASST
SSKAPPSSRRNVGMGTTRRLGSSTLGSKSSAAKEGAGAVDEEDFIKAFDD
VPVVQIYSSRDLEESINKIREILSDDKHDWEQRVNALKKIRSLLLAGAAE
YDNFFQHLRLLDGAFKLSAKDLRSQVVREACITLGHLSSVLGNKFDHGAE
AIMPTIFNLIPNSAKIMATSGVVAVRLIIRHTHIPRLIPVITSNCTSKSV
AVRRRCFEFLDLLLQEWQTHSLERHISVLAETIKKGIHDADSEARIEARK
CYWGFHSHFSREAEHLYHTLESSYQKALQSHLKNSDSIVSLPQSDRSSSS
SQESLNRPLSAKRSPTGSTTSRASTVSTKSVSTTGSLQRSRSDIDVNAAA
SAKSKVSSSSGTTPFSSAAALPPGSYASLGRIRTRRQSSGSATNVASTPD
NRGRSRAKVVSQSQRSRSANPAGAGSRSSSPGKLLGSGYGGLTGGSSRGP
PVTPSSEKRSKIPRSQGCSRETSPNRIGLDRFGLGQPGRIPGSVNAMRVL
STSTDLEAAVADALLLGDSRSKKKPVRRRYEPYGMYSDDDANSDASSVCS
ERSYGSRNGGIPHYLRQTEDVAEVLNHCASSNWSERKEGLLGLQNLLKSQ
RTLSRVELKRLCEIFTRMFADPHSKRVFSMFLETLVDFIIIHKDDLQDWL
FVLLTQLLKKMGADLLGSVQAKVQKALDVTRDSFPFDQQFNILMRFIVDQ
TQTPNLKVKVAILKYIESLARQMDPTDFVNSSETRLAVSRIITWTTEPKS
SDVRKAAQIVLISLFELNTPEFTMLLGALPKTFQDGATKLLHNHLKNSSN
TSVGSPSNTIGRTPSRHTSSRTSPLTSPTNCSHGGLSPSMLDYDTENLNS
EEIYSSLRGVTEAIEKFSFRSQEDLNEPIKRDGKKECDIVSRDGGAASPA
TEGRGGSEVEGGRTALDNKTSLLNTQPPRAFPGPRARDYNPYPYSDAINT
YDKTALKEAVFDDDMEQLRDVPIDHSDLVADLLKELSNHNERVEERKGAL
LELLKITREDSLGVWEEHFKTILLLLLETLGDKDHSIRALALRVLREILR
NQPARFKNYAELTIMKTLEAHKDSHKEVVRAAEEAASTLASSIHPEQCIK
VLCPIIQTADYPINLAAIKMQTKVVERIAKESLLQLLVDIIPGLLQGYDN
TESSVRKASVFCLVAIYSVIGEDLKPHLAQLTGSKMKLLNLYIKRAQTTN
SNSSSSSDVSTHS*
Vector Type
Bacterial
Antibiotic
Amp
DU Number
DU48820
Location
PPU
MTA
Notes
variant 3
Price
£125.00
To submit an order for this reagent acceptance of the Dundee Material Transfer Agreement is required at checkout.