Pulmonary Arterial Hypertension KnowledgeBase (bioinfom_tsdb)
bioinfom_tsdb
Pulmonary Arterial Hypertension KnowledgeBase
General information | Literature | Expression | Regulation | Variant | Interaction

Basic Information

Gene ID

9353

Name

SLIT2

Synonym

SLIL3|Slit-2;slit homolog 2 (Drosophila);SLIT2;slit homolog 2 (Drosophila)

Definition

slit homolog 2 protein

Position

4p15.2

Gene Type

protein-coding

TSG scores

Description

TUSON ranking

15351

TUSON P-value

1

Pathways and Diseases

Pathway

Axon guidance mediated by Slit/Robo;PANTHER;P00008

Pathway

Axon guidance;Reactome;REACT:18266

Pathway

Glypican 1 network;PID Curated;200021

Pathway

Regulation of Commissural axon pathfinding by Slit and Robo;PID Reactome;500093

Pathway

Axon guidance;KEGG PATHWAY;hsa04360

Pathway

Signaling by Robo receptor;PID Reactome;500092

Disease

Pulmonary fibrosis;FunDO

Disease

Echocardiographic traits;NHGRI

Disease

Cancer;FunDO

Disease

CARDIOVASCULAR;GAD

Disease

Echocardiographic traits;GAD

External Links

Links to Entrez Gene

9353

Links to all GeneRIF Items

9353

Links to iHOP

9353

Sequence Information

The sequences provided here are only the longest representative sequences, not covering all the isoforms.

Nucleotide Sequence

>9353 : length: 4590
atgcgcggcgttggctggcagatgctgtccctgtcgctggggttagtgctggcgatcctg
aacaaggtggcaccgcaggcgtgcccggcgcagtgctcttgctcgggcagcacagtggac
tgtcacgggctggcgctgcgcagcgtgcccaggaatatcccccgcaacaccgagagactg
gatttaaatggaaataacatcacaagaattacgaagacagattttgctggtcttagacat
ctaagagttcttcagcttatggagaataagattagcaccattgaaagaggagcattccag
gatcttaaagaactagagagactgcgtttaaacagaaatcaccttcagctgtttcctgag
ttgctgtttcttgggactgcgaagctatacaggcttgatctcagtgaaaaccaaattcag
gcaatcccaaggaaagctttccgtggggcagttgacataaaaaatttgcaactggattac
aaccagatcagctgtattgaagatggggcattcagggctctccgggacctggaagtgctc
actctcaacaataacaacattactagactttctgtggcaagtttcaaccatatgcctaaa
cttaggacttttcgactgcattcaaacaacctgtattgtgactgccacctggcctggctc
tccgactggcttcgccaaaggcctcgggttggtctgtacactcagtgtatgggcccctcc
cacctgagaggccataatgtagccgaggttcaaaaacgagaatttgtctgcagtggtcac
cagtcatttatggctccttcttgtagtgttttgcactgccctgccgcctgtacctgtagc
aacaatatcgtagactgtcgtgggaaaggtctcactgagatccccacaaatcttccagag
accatcacagaaatacgtttggaacagaacacaatcaaagtcatccctcctggagctttc
tcaccatataaaaagcttagacgaattgacctgagcaataatcagatctctgaacttgca
ccagatgctttccaaggactacgctctctgaattcacttgtcctctatggaaataaaatc
acagaactccccaaaagtttatttgaaggactgttttccttacagctcctattattgaat
gccaacaagataaactgccttcgggtagatgcttttcaggatctccacaacttgaacctt
ctctccctatatgacaacaagcttcagaccatcgccaaggggaccttttcacctcttcgg
gccattcaaactatgcatttggcccagaacccctttatttgtgactgccatctcaagtgg
ctagcggattatctccataccaacccgattgagaccagtggtgcccgttgcaccagcccc
cgccgcctggcaaacaaaagaattggacagatcaaaagcaagaaattccgttgttcagct
aaagaacagtatttcattccaggtacagaagattatcgatcaaaattaagtggagactgc
tttgcggatctggcttgccctgaaaagtgtcgctgtgaaggaaccacagtagattgctct
aatcaaaagctcaacaaaatcccggagcacattccccagtacactgcagagttgcgtctc
aataataatgaatttaccgtgttggaagccacaggaatctttaagaaacttcctcaatta
cgtaaaataaactttagcaacaataagatcacagatattgaggagggagcatttgaagga
gcatctggtgtaaatgaaatacttcttacgagtaatcgtttggaaaatgtgcagcataag
atgttcaagggattggaaagcctcaaaactttgatgttgagaagcaatcgaataacctgt
gtggggaatgacagtttcataggactcagttctgtgcgtttgctttctttgtatgataat
caaattactacagttgcaccaggggcatttgatactctccattctttatctactctaaac
ctcttggccaatccttttaactgtaactgctacctggcttggttgggagagtggctgaga
aagaagagaattgtcacgggaaatcctagatgtcaaaaaccatacttcctgaaagaaata
cccatccaggatgtggccattcaggacttcacttgtgatgacggaaatgatgacaatagt
tgctccccactttctcgctgtcctactgaatgtacttgcttggatacagtcgtccgatgt
agcaacaagggtttgaaggtcttgccgaaaggtattccaagagatgtcacagagttgtat
ctggatggaaaccaatttacactggttcccaaggaactctccaactacaaacatttaaca
cttatagacttaagtaacaacagaataagcacgctttctaatcagagcttcagcaacatg
acccagctcctcaccttaattcttagttacaaccgtctgagatgtattcctcctcgcacc
tttgatggattaaagtctcttcgattactttctctacatggaaatgacatttctgttgtg
cctgaaggtgctttcaatgatctttctgcattatcacatctagcaattggagccaaccct
ctttactgtgattgtaacatgcagtggttatccgactgggtgaagtcggaatataaggag
cctggaattgctcgttgtgctggtcctggagaaatggcagataaacttttactcacaact
ccctccaaaaaatttacctgtcaaggtcctgtggatgtcaatattctagctaagtgtaac
ccctgcctatcaaatccgtgtaaaaatgatggcacatgtaatagtgatccagttgacttt
taccgatgcacctgtccatatggtttcaaggggcaggactgtgatgtcccaattcatgcc
tgcatcagtaacccatgtaaacatggaggaacttgccacttaaaggaaggagaagaagat
ggattctggtgtatttgtgctgatggatttgaaggagaaaattgtgaagtcaacgttgat
gattgtgaagataatgactgtgaaaataattctacatgtgtcgatggcattaataactac
acatgcctttgcccacctgagtatacaggtgagttgtgtgaggagaagctggacttctgt
gcccaggacctgaacccctgccagcacgattcaaagtgcatcctaactccaaagggattc
aaatgtgactgcacaccagggtacgtaggtgaacactgcgacatcgattttgacgactgc
caagacaacaagtgtaaaaacggagcccactgcacagatgcagtgaacggctatacgtgc
atatgccccgaaggttacagtggcttgttctgtgagttttctccacccatggtcctccct
cgtaccagcccctgtgataattttgattgtcagaatggagctcagtgtatcgtcagaata
aatgagccaatatgtcagtgtttgcctggctatcagggagaaaagtgtgaaaaattggtt
agtgtgaattttataaacaaagagtcttatcttcagattccttcagccaaggttcggcct
cagacgaacataacacttcagattgccacagatgaagacagcggaatcctcctgtataag
ggtgacaaagaccatatcgcggtagaactctatcgggggcgtgttcgtgccagctatgac
accggctctcatccagcttctgccatttacagtgtggagacaatcaatgatggaaacttc
cacattgtggaactacttgccttggatcagagtctctctttgtccgtggatggtgggaac
cccaaaatcatcactaacttgtcaaagcagtccactctgaattttgactctccactctat
gtaggaggcatgccagggaagagtaacgtggcatctctgcgccaggcccctgggcagaac
ggaaccagcttccacggctgcatccggaacctttacatcaacagtgagctgcaggacttc
cagaaggtgccgatgcaaacaggcattttgcctggctgtgagccatgccacaagaaggtg
tgtgcccatggcacatgccagcccagcagccaggcaggcttcacctgcgagtgccaggaa
ggatggatggggcccctctgtgaccaacggaccaatgacccttgccttggaaataaatgc
gtacatggcacctgcttgcccatcaatgcgttctcctacagctgtaagtgcttggagggc
catggaggtgtcctctgtgatgaagaggaggatctgtttaacccatgccaggcgatcaag
tgcaagcacgggaagtgcaggctttcaggtctggggcagccctactgtgaatgcagcagt
ggatacacgggggacagctgtgatcgagaaatctcttgtcgaggggaaaggataagagat
tattaccaaaagcagcagggctatgctgcttgccaaacaaccaagaaggtgtcccgatta
gagtgcagaggtgggtgtgcaggagggcagtgctgtggaccgctgaggagcaagcggcgg
aaatactctttcgaatgcactgacggctcctcctttgtggacgaggttgagaaagtggtg
aagtgcggctgtacgaggtgtgtgtcctaa

Protein Sequence

>9353 : length: 1529
MRGVGWQMLSLSLGLVLAILNKVAPQACPAQCSCSGSTVDCHGLALRSVPRNIPRNTERL
DLNGNNITRITKTDFAGLRHLRVLQLMENKISTIERGAFQDLKELERLRLNRNHLQLFPE
LLFLGTAKLYRLDLSENQIQAIPRKAFRGAVDIKNLQLDYNQISCIEDGAFRALRDLEVL
TLNNNNITRLSVASFNHMPKLRTFRLHSNNLYCDCHLAWLSDWLRQRPRVGLYTQCMGPS
HLRGHNVAEVQKREFVCSGHQSFMAPSCSVLHCPAACTCSNNIVDCRGKGLTEIPTNLPE
TITEIRLEQNTIKVIPPGAFSPYKKLRRIDLSNNQISELAPDAFQGLRSLNSLVLYGNKI
TELPKSLFEGLFSLQLLLLNANKINCLRVDAFQDLHNLNLLSLYDNKLQTIAKGTFSPLR
AIQTMHLAQNPFICDCHLKWLADYLHTNPIETSGARCTSPRRLANKRIGQIKSKKFRCSA
KEQYFIPGTEDYRSKLSGDCFADLACPEKCRCEGTTVDCSNQKLNKIPEHIPQYTAELRL
NNNEFTVLEATGIFKKLPQLRKINFSNNKITDIEEGAFEGASGVNEILLTSNRLENVQHK
MFKGLESLKTLMLRSNRITCVGNDSFIGLSSVRLLSLYDNQITTVAPGAFDTLHSLSTLN
LLANPFNCNCYLAWLGEWLRKKRIVTGNPRCQKPYFLKEIPIQDVAIQDFTCDDGNDDNS
CSPLSRCPTECTCLDTVVRCSNKGLKVLPKGIPRDVTELYLDGNQFTLVPKELSNYKHLT
LIDLSNNRISTLSNQSFSNMTQLLTLILSYNRLRCIPPRTFDGLKSLRLLSLHGNDISVV
PEGAFNDLSALSHLAIGANPLYCDCNMQWLSDWVKSEYKEPGIARCAGPGEMADKLLLTT
PSKKFTCQGPVDVNILAKCNPCLSNPCKNDGTCNSDPVDFYRCTCPYGFKGQDCDVPIHA
CISNPCKHGGTCHLKEGEEDGFWCICADGFEGENCEVNVDDCEDNDCENNSTCVDGINNY
TCLCPPEYTGELCEEKLDFCAQDLNPCQHDSKCILTPKGFKCDCTPGYVGEHCDIDFDDC
QDNKCKNGAHCTDAVNGYTCICPEGYSGLFCEFSPPMVLPRTSPCDNFDCQNGAQCIVRI
NEPICQCLPGYQGEKCEKLVSVNFINKESYLQIPSAKVRPQTNITLQIATDEDSGILLYK
GDKDHIAVELYRGRVRASYDTGSHPASAIYSVETINDGNFHIVELLALDQSLSLSVDGGN
PKIITNLSKQSTLNFDSPLYVGGMPGKSNVASLRQAPGQNGTSFHGCIRNLYINSELQDF
QKVPMQTGILPGCEPCHKKVCAHGTCQPSSQAGFTCECQEGWMGPLCDQRTNDPCLGNKC
VHGTCLPINAFSYSCKCLEGHGGVLCDEEEDLFNPCQAIKCKHGKCRLSGLGQPYCECSS
GYTGDSCDREISCRGERIRDYYQKQQGYAACQTTKKVSRLECRGGCAGGQCCGPLRSKRR
KYSFECTDGSSFVDEVEKVVKCGCTRCVS



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