cDNA Clone
LRRK1

Synonyms
RIPK6; Roco1
Plasmid
pCMV-FLAG LRRK1 D1409A Kdead
Parent Plasmid
pCMV5 FLAG
Expressed
FLAG-LRRK1 D1409A Kdead
Genbank
NM_024652.4 with one silent change
Tag
FLAG
Species
Human
Sequence of Insert
GGATCCATGGCTGGCATGTCGCAAAGACCCCCCAGCATGTACTGGTGTGTGGGGCCGGAGGAGTCAGCTGTGTGTCCAGAACGTGCCATGGAGACGCTTAACGGTGCCGGGGACACGGGCGGCAAGCCGTCCACGCGGGGCGGTGACCCTGCAGCGCGGTCCCGCAGGACGGAAGGCATCCGCGCCGCGTACAGGCGGGGAGACCGCGGCGGCGCCCGGGACCTGCTGGAGGAGGCCTGCGACCAGTGCGCGTCCCAGCTGGAAAAGGGCCAGCTTCTGAGCATCCCGGCAGCCTATGGGGATCTGGAGATGGTCCGCTACCTACTCAGCAAGAGACTGGTGGAGCTGCCCACCGAGCCCACGGATGACAACCCAGCCGTGGTGGCAGCGTATTTTGGACACACGGCAGTTGTGCAGGAATTGCTTGAGTCCTTACCAGGTCCCTGCAGTCCCCAGCGGCTTCTGAACTGGATGCTGGCCTTGGCTTGCCAGCGAGGGCACCTGGGGGTTGTGAAGCTCCTGGTCCTGACGCACGGGGCTGACCCGGAGAGCTACGCTGTCAGGAAGAATGAGTTCCCTGTCATCGTGCGCTTGCCCCTGTATGCGGCCATCAAGTCAGGGAATGAAGACATTGCAATATTCCTGCTTCGGCATGGGGCCTATTTCTGTTCCTACATCTTGCTGGATAGTCCTGACCCCAGCAAACATCTGCTGAGAAAGTACTTCATTGAAGCCAGTCCCTTGCCCAGCAGTTATCCGGGAAAAACAGCTCTCCGTGTGAAATGGTCCCATCTCAGACTGCCCTGGGTAGACCTAGACTGGCTCATAGACATCTCCTGCCAGATCACGGAGCTCGACCTTTCTGCCAACTGCCTGGCGACCCTCCCCTCGGTTATCCCCTGGGGCCTCATCAATCTCCGGAAGCTGAACCTCTCCGACAACCACCTGGGGGAGCTGCCTGGCGTGCAGTCATCGGACGAAATCATCTGTTCCAGGCTACTTGAAATTGACATTTCCAGCAACAAGTTGTCCCACCTCCCTCCTGGATTCTTGCACCTCTCAAAACTTCAAAAACTGACAGCTTCAAAAAATTGTTTAGAAAAATTGTTCGAAGAAGAAAATGCCACTAACTGGATAGGTTTACGGAAGCTACAGGAACTTGATATATCTGACAATAAATTGACAGAACTCCCTGCCCTGTTCCTTCACTCTTTCAAGTCCCTCAATTCTCTGAATGTCTCCAGAAACAACCTGAAGGTGTTTCCAGATCCCTGGGCCTGCCCTTTGAAATGTTGTAAAGCTTCCAGAAATGCCCTGGAATGTCTGCCAGACAAAATGGCTGTCTTTTGGAAAAATCACCTGAAGGATGTGGATTTCTCAGAAAACGCACTCAAAGAAGTTCCCCTGGGACTTTTCCAGCTTGATGCCCTCATGTTCTTGAGGTTACAGGGGAACCAGCTGGCGGCACTTCCACCTCAAGAGAAGTGGACCTGCAGGCAGCTCAAAACCCTGGATCTCTCCAGAAACCAACTTGGCAAAAATGAAGATGGACTGAAAACGAAGCGTATTGCCTTTTTCACCACCAGAGGTCGCCAGCGCTCCGGGACTGAGGCAGCAAGTGTGCTGGAATTTCCGGCCTTCCTAAGTGAGTCTTTGGAAGTCCTTTGCCTGAACGACAACCACCTCGACACAGTCCCTCCCTCGGTTTGCCTACTGAAGAGCTTATCAGAGCTCTACTTGGGAAACAACCCTGGCCTCCGGGAGCTCCCTCCTGAGCTGGGGCAGCTGGGCAACCTCTGGCAGCTGGACACTGAAGACCTGACCATCAGCAATGTGCCTGCAGAAATCCAAAAAGAAGGCCCCAAAGCAATGCTGTCTTACCTGCGTGCTCAGCTGCGGAAAGCGGAAAAGTGCAAGCTGATGAAGATGATCATCGTGGGTCCCCCGCGCCAGGGCAAGTCCACCCTCCTGGAGATCTTACAGACGGGGAGGGCCCCCCAGGTGGTGCATGGAGAGGCCACCATCAGGACCACCAAGTGGGAGCTCCAGAGGCCGGCTGGCTCAAGAGCCAAGGTTGAGTCCGTGGAGTTCAACGTCTGGGACATCGGGGGACCGGCCAGCATGGCCACTGTCAACCAGTGCTTCTTCACGGACAAGGCCCTGTACGTGGTGGTCTGGAACCTGGCGCTGGGGGAGGAGGCCGTGGCCAACCTCCAGTTCTGGCTGCTCAACATCGAGGCCAAGGCCCCAAACGCCGTGGTGCTGGTGGTCGGGACGCACCTGGATTTAATTGAAGCCAAGTTCCGTGTGGAAAGGATTGCAACGCTGCGTGCCTATGTGCTGGCACTCTGCCGCTCCCCCTCCGGCTCCAGGGCCACAGGCTTCCCAGACATCACCTTCAAACACTTACATGAGATTTCCTGCAAGAGCCTGGAAGGTCAGGAAGGGCTGCGACAGCTGATTTTCCACGTCACGTGCAGCATGAAGGACGTGGGCAGCACCATCGGCTGCCAGCGACTGGCAGGGCGGCTGATCCCCAGGAGCTACCTGAGCCTGCAGGAGGCCGTGCTGGCAGAGCAGCAGCGCCGCAGCCGGGACGACGACGTGCAGTACCTGACGGACAGGCAGCTGGAGCAGCTGGTGGAGCAGACGCCCGACAACGACATCAAGGACTACGAGGACCTGCAGTCAGCCATCAGCTTCCTCATAGAAACCGGCACCCTGCTCCATTTCCCGGACACCAGCCACGGCCTGAGGAACCTCTACTTCCTCGACCCTATTTGGCTCTCCGAATGTCTGCAGAGGATCTTTAATATTAAGGGCTCTCGGTCAGTGGCCAAGAATGGGGTGATCAGAGCAGAAGACCTCAGGATGCTGCTGGTGGGGACTGGCTTCACGCAGCAGACGGAAGAGCAGTACTTCCAGTTCCTGGCCAAGTTTGAGATCGCCCTGCCCGTCGCCAATGACAGCTACCTCCTGCCCCATCTCCTTCCATCTAAACCTGGCCTGGACACCCACGGTATGCGGCACCCCACAGCCAACACCATTCAGAGGGTATTTAAGATGAGCTTCGTTCCCGTTGGCTTCTGGCAAAGGTTTATAGCACGGATGCTGATCAGCCTGGCGGAGATGGACCTGCAGCTTTTTGAAAACAAGAAGAATACTAAAAGCAGGAACAGGAAAGTCACCATTTACAGTTTTACAGGAAACCAGAGAAATCGCTGTAGCACATTCAGAGTGAAAAGAAATCAGACCATCTATTGGCAGGAAGGGCTCCTGGTCACTTTTGATGGGGGCTACCTCAGTGTGGAATCTTCCGACGTGAACTGGAAAAAGAAGAAAAGCGGAGGAATGAAAATTGTTTGCCAATCAGAAGTGAGGGACTTCTCAGCCATGGCTTTCATCACGGACCACGTCAATTCCTTGATTGATCAGTGGTTTCCCGCCCTGACAGCCACAGAGAGCGACGGGACGCCACTCATGGAGCAGTACGTGCCCTGCCCGGTCTGCGAGACAGCCTGGGCCCAGCACACGGACCCCAGTGAGAAATCAGAGGATGTGCAGTACTTCGACATGGAAGACTGTGTCCTGACGGCCATCGAGCGGGACTTCATCTCCTGCCCCAGACACCCGGACCTCCCCGTGCCGCTGCAGGAGCTGGTCCCTGAACTGTTCATGACCGACTTCCCGGCCAGGCTCTTCCTGGAGAACAGCAAGCTGGAGCACAGCGAGGACGAGGGCAGCGTCCTGGGCCAGGGCGGCAGTGGCACCGTCATCTACCGGGCCCGGTACCAGGGCCAGCCTGTGGCCGTCAAGCGCTTCCACATCAAAAAATTCAAGAACTTTGCTAACGTACCGGCAGACACCATGCTGAGGCACCTGCGGGCCACCGATGCCATGAAGAACTTCTCCGAGTTCCGGCAGGAGGCCAGCATGCTGCACGCGCTGCAGCACCCCTGCATCGTGGCGCTCATCGGCATCAGCATCCACCCGCTCTGCTTCGCCCTGGAGCTCGCGCCGCTCAGCAGCCTCAACACCGTGCTGTCCGAGAACGCCAGAGATTCTTCCTTTATACCCCTGGGACACATGCTCACCCAAAAAATAGCCTACCAGATCGCCTCGGGCCTGGCCTACCTGCACAAGAAAAACATCATCTTCTGTGACCTGAAGTCGGACAACATTCTGGTGTGGTCCCTTGACGTCAAGGAGCACATCAACATCAAGCTATCTGCCTACGGGATTTCGAGGCAGTCATTCCATGAGGGCGCCCTAGGCGTGGAGGGCACTCCTGGCTACCAGGCCCCAGAGATCAGGCCTCGCATTGTATATGATGAGAAGGTAGATATGTTCTCCTATGGAATGGTGCTCTACGAGTTGCTGTCAGGACAGCGCCCTGCACTGGGCCACCACCAGCTCCAGATTGCCAAGAAGCTGTCCAAGGGCATCCGCCCGGTTCTGGGGCAGCCGGAGGAAGTGCAGTTCCGGCGACTGCAGGCGCTCATGATGGAGTGCTGGGACACTAAGCCAGAGAAGCGACCGCTGGCCCTGTCGGTGGTGAGCCAGATGAAGGACCCGACTTTTGCCACCTTCATGTATGAACTGTGCTGTGGGAAGCAGACAGCCTTCTTCTCATCCCAGGGCCAGGAGTACACCGTGGTGTTTTGGGATGGAAAAGAGGAGTCCAGGAACTACACGGTGGTGAACACAGAGAAGGGCCTCATGGAGGTGCAGAGGATGTGCTGCCCTGGGATGAAGGTGAGCTGCCAGCTCCAGGTCCAGAGATCCCTGTGGACAGCCACCGAGGACCAGAAAATCTACATCTACACCCTCAAGGGCATGTGCCCCTTAAACACACCCCAACAGGCCTTGGATACTCCAGCTGTCGTCACCTGCTTCTTGGCCGTGCCTGTTATTAAAAAGAATTCCTACCTGGTCTTAGCGGGCCTCGCCGATGGGCTTGTGGCTGTGTTTCCCGTGGTGCGGGGCACCCCAAAGGACAGCTGCTCCTACCTGTGCTCACACACAGCCAACAGGTCCAAGTTCAGCATCGCGGATGAAGACGCACGGCAGAACCCCTACCCAGTGAAGGCCATGGAGGTGGTCAACAGCGGCTCTGAGGTCTGGTACAGCAATGGGCCGGGCCTCCTTGTCATCGACTGTGCCTCCCTGGAGATCTGCAGGCGGCTGGAGCCCTACATGGCCCCCTCCATGGTTACGTCAGTCGTGTGCAGCTCTGAGGGCAGAGGGGAGGAGGTCGTCTGGTGCCTGGATGACAAGGCCAACTCCTTGGTGATGTACCACTCCACCACCTACCAGCTGTGTGCCCGGTACTTCTGCGGGGTCCCCAGCCCCCTCAGGGACATGTTTCCCGTGCGGCCCTTGGACACGGAACCCCCGGCAGCCAGCCACACGGCCAACCCAAAGGTGCCTGAGGGGGACTCCATCGCGGACGTGAGCATCATGTACAGTGAGGAGCTGGGCACGCAGATCCTGATCCACCAGGAATCACTCACTGACTACTGCTCCATGTCCTCCTACTCCTCATCCCCACCCCGCCAGGCTGCCAGGTCCCCCTCAAGCCTCCCCAGCTCCCCAGCAAGTTCTTCCAGTGTGCCTTTCTCCACCGACTGCGAGGACTCAGACATGCTACATACGCCCGGTGCTGCCTCCGACAGGTCTGAGCATGACCTGACCCCCATGGACGGGGAGACCTTCAGCCAGCACCTGCAGGCCGTGAAGATCCTCGCCGTCAGAGACCTCATTTGGGTCCCCAGGCGCGGTGGAGATGTTATCGTCATTGGCCTGGAGAAGGATTCTGGCGCCCAGCGGGGCCGAGTCATTGCCGTCTTAAAAGCCCGAGAGCTGACTCCGCATGGGGTGCTGGTGGATGCTGCCGTGGTGGCAAAGGACACTGTTGTGTGCACCTTTGAAAATGAAAACACAGAGTGGTGCCTGGCCGTCTGGAGGGGCTGGGGCGCCAGGGAGTTCGACATTTTCTACCAGTCCTACGAGGAGCTGGGCCGGCTGGAGGCTTGCACTCGCAAGAGAAGGTAAGCGGCCGC

Amino Acid Sequence
MDYKDDDDKGSMAGMSQRPPSMYWCVGPEESAVCPERAMETLNGAGDTGGKPSTRGGDPAARSRRTEGIRAAYRRGDRGGARDLLEEACDQCASQLEKGQ
LLSIPAAYGDLEMVRYLLSKRLVELPTEPTDDNPAVVAAYFGHTAVVQELLESLPGPCSPQRLLNWMLALACQRGHLGVVKLLVLTHGADPESYAVRKNE
FPVIVRLPLYAAIKSGNEDIAIFLLRHGAYFCSYILLDSPDPSKHLLRKYFIEASPLPSSYPGKTALRVKWSHLRLPWVDLDWLIDISCQITELDLSANC
LATLPSVIPWGLINLRKLNLSDNHLGELPGVQSSDEIICSRLLEIDISSNKLSHLPPGFLHLSKLQKLTASKNCLEKLFEEENATNWIGLRKLQELDISD
NKLTELPALFLHSFKSLNSLNVSRNNLKVFPDPWACPLKCCKASRNALECLPDKMAVFWKNHLKDVDFSENALKEVPLGLFQLDALMFLRLQGNQLAALP
PQEKWTCRQLKTLDLSRNQLGKNEDGLKTKRIAFFTTRGRQRSGTEAASVLEFPAFLSESLEVLCLNDNHLDTVPPSVCLLKSLSELYLGNNPGLRELPP
ELGQLGNLWQLDTEDLTISNVPAEIQKEGPKAMLSYLRAQLRKAEKCKLMKMIIVGPPRQGKSTLLEILQTGRAPQVVHGEATIRTTKWELQRPAGSRAK
VESVEFNVWDIGGPASMATVNQCFFTDKALYVVVWNLALGEEAVANLQFWLLNIEAKAPNAVVLVVGTHLDLIEAKFRVERIATLRAYVLALCRSPSGSR
ATGFPDITFKHLHEISCKSLEGQEGLRQLIFHVTCSMKDVGSTIGCQRLAGRLIPRSYLSLQEAVLAEQQRRSRDDDVQYLTDRQLEQLVEQTPDNDIKD
YEDLQSAISFLIETGTLLHFPDTSHGLRNLYFLDPIWLSECLQRIFNIKGSRSVAKNGVIRAEDLRMLLVGTGFTQQTEEQYFQFLAKFEIALPVANDSY
LLPHLLPSKPGLDTHGMRHPTANTIQRVFKMSFVPVGFWQRFIARMLISLAEMDLQLFENKKNTKSRNRKVTIYSFTGNQRNRCSTFRVKRNQTIYWQEG
LLVTFDGGYLSVESSDVNWKKKKSGGMKIVCQSEVRDFSAMAFITDHVNSLIDQWFPALTATESDGTPLMEQYVPCPVCETAWAQHTDPSEKSEDVQYFD
MEDCVLTAIERDFISCPRHPDLPVPLQELVPELFMTDFPARLFLENSKLEHSEDEGSVLGQGGSGTVIYRARYQGQPVAVKRFHIKKFKNFANVPADTML
RHLRATDAMKNFSEFRQEASMLHALQHPCIVALIGISIHPLCFALELAPLSSLNTVLSENARDSSFIPLGHMLTQKIAYQIASGLAYLHKKNIIFCDLKS
DNILVWSLDVKEHINIKLSAYGISRQSFHEGALGVEGTPGYQAPEIRPRIVYDEKVDMFSYGMVLYELLSGQRPALGHHQLQIAKKLSKGIRPVLGQPEE
VQFRRLQALMMECWDTKPEKRPLALSVVSQMKDPTFATFMYELCCGKQTAFFSSQGQEYTVVFWDGKEESRNYTVVNTEKGLMEVQRMCCPGMKVSCQLQ
VQRSLWTATEDQKIYIYTLKGMCPLNTPQQALDTPAVVTCFLAVPVIKKNSYLVLAGLADGLVAVFPVVRGTPKDSCSYLCSHTANRSKFSIADEDARQN
PYPVKAMEVVNSGSEVWYSNGPGLLVIDCASLEICRRLEPYMAPSMVTSVVCSSEGRGEEVVWCLDDKANSLVMYHSTTYQLCARYFCGVPSPLRDMFPV
RPLDTEPPAASHTANPKVPEGDSIADVSIMYSEELGTQILIHQESLTDYCSMSSYSSSPPRQAARSPSSLPSSPASSSSVPFSTDCEDSDMLHTPGAASD
RSEHDLTPMDGETFSQHLQAVKILAVRDLIWVPRRGGDVIVIGLEKDSGAQRGRVIAVLKARELTPHGVLVDAAVVAKDTVVCTFENENTEWCLAVWRGW
GAREFDIFYQSYEELGRLEACTRKRR*
Vector Type
Mammalian
Antibiotic
Amp
DU Number
DU17061
Location
PPU
MTA
Low Temp
No
Price
£125.00
To submit an order for this reagent acceptance of the Dundee Material Transfer Agreement is required at checkout.