Entry |
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Name |
(RefSeq) focal adhesion kinase 1-like isoform X1
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KO |
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Organism |
cclu Coregonus clupeaformis (lake whitefish)
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Pathway |
cclu05100 | Bacterial invasion of epithelial cells |
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Brite |
KEGG Orthology (KO) [BR:cclu00001]
09130 Environmental Information Processing
09132 Signal transduction
04012 ErbB signaling pathway
121542649
04370 VEGF signaling pathway
121542649
09140 Cellular Processes
09141 Transport and catabolism
04148 Efferocytosis
121542649
09144 Cellular community - eukaryotes
04510 Focal adhesion
121542649
09142 Cell motility
04810 Regulation of actin cytoskeleton
121542649
09160 Human Diseases
09171 Infectious disease: bacterial
05100 Bacterial invasion of epithelial cells
121542649
09180 Brite Hierarchies
09181 Protein families: metabolism
01001 Protein kinases [BR:cclu01001]
121542649
01009 Protein phosphatases and associated proteins [BR:cclu01009]
121542649
Enzymes [BR:cclu01000]
2. Transferases
2.7 Transferring phosphorus-containing groups
2.7.10 Protein-tyrosine kinases
2.7.10.2 non-specific protein-tyrosine kinase
121542649
Protein kinases [BR:cclu01001]
Non-receptor tyrosine kinases
FAK family
121542649
Protein phosphatases and associated proteins [BR:cclu01009]
Protein serine/threonine phosphatases
Phosphoprotein phosphatases (PPPs)
Protein phosphatase-1
PP1-interacting proteins (PIPs)
121542649
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SSDB |
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Motif |
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Other DBs |
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LinkDB |
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Position |
28:12926620..13045097
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AA seq |
1120 aa
MERSGCIPLCWAQSACVYAQHPPLPKYDRQLAPTKGGMASAYLDPNLNHHAGLGGGVVKP
GTMDRVLKIHHYLESNSEPSTWASHIRHGDATDVRGIIQKIADIHKVKCVSCLGLRLSHL
RSGDIHWLHPDMGVSHVRERYELHHPQEEWRYELRIRYLPKGFLNHFSEDKPTLNYFYHQ
VKSDYMLEVADQVDQDIALKLGCLEIRRFFREMRGNALDKKSNYELLEKDVGLRRFFPKS
LLDSVKAKPLRKLIQQTFKQFANLNDEQSIRKFFEILSPIYRFDKECFKCALGSSWIISV
ELAIGPEEGISYLTDKGSTPTHLANFTQVQTIQYSSTEDKVRQGMLLLNVAGAPEPLTVT
TASLNTAENMADLIDGYCRLVNGASQSFIVRVQKEGERALPSIPKSTPKVSNHEKRLDGG
VRTRVACVSETDDYAEIVDEEDTYTMPSKYYGLEEARDYEIQRQRIELGRCIGEGQFGDV
HQGVYMSSENPALSVAIKTCKNCTSDSVREKFLQEALTMRQFDHPHIVKLIGVITENPVW
IIMELCTLGELRSFLQVRKYNLDLASLILYAFQLSTALAYLESKRFVHRDIAARNVLVSS
VDCVKLGDFGLSRYMEDSSYYKASKGKLPIKWMAPESINFRRFTSASDVWMFGVCMWEIL
IYGVKPFQGVKNNDVIGRIENGERLAMPHNCPPTLYSLMTKCWAYDPSKRPRFTELKAHL
SQILEEEKLQQKERTRMEMRRQVSVSWDSGGSNEAPPKEVWPREAYCERVCKPSRPGYPS
PRSSEGFYPSPQHLGQPTHYQVEQGEQMAGYPGPHGMPSMTSGMYPPQASHDPHDTWNHH
RQQDLPMWSPNIEDRGSLDMQVMGQVLPPLLMEEQLMMQQQQMEEDQRWLEQEERFLKPD
SRRSRGSIDRDDCSLQGPTGNQHIYQPIGKPEHAAPPKKPPRPGAPSHLGSQASLNPVDS
YNEGVKPWRLQPQEISPPPTANLDRSNDKVYENVTGLVKAVIEMSSKIQPAPPEEYVPMV
KDVGLALRTLLSTVDETITLLPASTHREVEMAQKLLNSDLAELINKMKLAQQYVMTSLQQ
DYKKQMLTAAHALAVDAKNLLDVIDQSRLRMLGQARPPPH |
NT seq |
3363 nt +upstreamnt +downstreamnt
atggagaggagtggctgcatccccctatgctgggcccagagcgcctgtgtttacgctcaa
caccctccactcccaaaatatgacagacagctagcccccaccaaaggaggcatggcgtca
gcgtacctggaccccaacctgaaccaccatgctgggctgggcggtggggtggtgaagccg
gggaccatggaccgcgtgctcaagatccaccactacttggagagcaacagtgaaccgtcc
acctgggccagccacatccgccatggagatgccactgacgtcaggggtatcatccagaag
atagcagacatccacaaggtgaagtgtgtgtcctgtctgggcctgcgtctcagccacctg
cgctcaggtgacatccactggctgcaccccgacatgggggtgtcccacgtcagggagagg
tatgagctgcaccaccctcaggaagagtggcggtatgagctacgaatacgctacttgcca
aaaggattcttgaaccatttttcagaagacaaacctacactgaactacttctaccatcag
gtcaagagtgactacatgttggaggtagcagatcaagtcgaccaagacattgcacttaaa
ttgggctgccttgaaatcaggagattttttagggaaatgcgagggaatgccctggataag
aaatcgaattatgaattattagaaaaagatgtgggtttacgaagattcttccccaagagt
ttgctggactctgtgaaggctaaaccactaaggaaactgatccagcagaccttcaaacaa
tttgccaacctaaacgatgaacagagcattcgcaagttctttgagatcctgtctcccatt
tacagattcgacaaggaatgttttaaatgtgcccttgggtctagttggattatctctgtg
gagcttgccattggacctgaggagggcatcagctacctgacagacaaaggatcaactcca
acccatctggccaacttcacccaggtacagaccatccagtactccagcacggaggacaag
gtgcgccaggggatgctgctgctcaatgtggctggagcccctgagcctctgacggtgacc
acagcgtctctgaacacggcagagaacatggctgacctgatagacggatactgtcgcctg
gtcaacggagcctcccagtctttcatcgtccgcgttcaaaaggagggagagagagcgcta
ccttccatcccaaagtccaccccaaaggtctccaaccatgagaaacgtctggatgggggg
gtccggacaagggttgcatgtgtctcagagactgacgactatgcagagatcgtagatgag
gaggatacgtacaccatgccctccaaatactatggactagaggaagccagggactatgag
attcagaggcagaggattgagcttggccgctgtatcggagagggacagttcggggacgtc
caccagggagtctacatgagctcggaaaaccctgctctgtctgtggcgatcaagacgtgt
aagaactgcacctctgatagtgtcagggagaagtttttacaagaagctctgaccatgcgt
cagtttgaccacccccacatagtgaagctgattggagtgatcacagaaaacccagtgtgg
atcatcatggagctgtgtacactgggagagctacgctcctttctgcaagtgagaaaatac
aacctcgacttggcatcactgattctctacgctttccagctaagcacagcactcgcctac
ctggagagcaagcggtttgtacatagggatatagctgccaggaacgttctggtatcctca
gtggactgtgttaaactgggagactttggcttgtctcgatacatggaggacagctcctat
tacaaagcctctaaagggaaactgcctatcaaatggatggcaccagagtctattaacttc
agacgctttacctcagccagtgacgtgtggatgtttggtgtgtgtatgtgggagatcctc
atctacggagtcaaacccttccagggggtgaagaacaacgatgtcatcggccggatagag
aacggagaacgtctggccatgccccacaactgcccccccaccctgtacagcctgatgacc
aagtgctgggcctacgaccctagcaagagaccccgcttcacagagctcaaagcccatctc
agtcagatattggaggaggagaagctccagcagaaggagaggacacgtatggagatgaga
cgtcaggtctctgtgtcctgggactcaggggggtccaacgaggcaccgcctaaagaggtt
tggcctcgagaagcttactgtgaaagggtctgtaagcccagcagaccagggtaccccagc
ccacgctccagtgaggggttctaccccagcccacagcaccttgggcagcccacccactac
caggtagagcaaggagagcagatggcaggataccctggcccccacggcatgccctccatg
acgagtgggatgtaccctccccaggcctcccacgacccccatgacacctggaaccaccac
cggcagcaggacctccctatgtggtcccccaacattgaggacagggggtctctggacatg
caggtgatgggtcaggttctgccccccctcctgatggaggaacagctgatgatgcaacag
cagcagatggaggaggaccagcggtggctggagcaggaggaacgcttcctgaagccagat
tcaaggagatccagaggcagtattgaccgggatgactgcagcctccaaggcccaacagga
aaccagcacatataccaacccataggcaaaccagaacatgcagctccaccaaagaagccc
ccccgtcctggagcccccagtcacctgggtagtcaggccagcctgaaccccgtagacagc
tacaatgagggagtgaagccctggaggctccagcctcaggagatcagcccgccccccact
gccaacctggaccgctctaatgacaaggtctatgagaatgtcacaggactggtgaaggct
gtcatagagatgtccagtaaaattcagcctgcgcctcccgaggaatacgtgccaatggtc
aaggatgtgggtctggcactgaggacactcctgtccacagtggatgaaacaatcacgtta
cttccagctagcacacacagagaggtggagatggcccagaagctgttgaactctgacctg
gccgagctgatcaacaagatgaagctggcccagcagtatgtcatgaccagcctgcagcag
gactataagaaacagatgctgacagccgcacacgccctggctgtagacgccaagaacctt
ctggacgtcatcgaccagagccggctcaggatgttgggccaggcccggccgccacctcac
tag |