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CTTN — PAK6
Pathways - manually collected, often from reviews:
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BioCarta agrin in postsynaptic differentiation:
agrin/Integrin-alpha/Integrin-beta/dystroglycan 1/SRC/FAK/Paxillin/PKL/PIX/PAKs/dystrophin/actin/laminin/cortactin complex (AGRN-ITGA1-ITGB1-DAG1-SRC-PTK2-PXN-GIT2-ARHGEF6_ARHGEF7-PAK3_PAK7_PAK1_PAK2_PAK6_PAK4-DMD-ACTA1-LAMA1_LAMC3_LAMA2_LAMB1_LAMC1_LAMB2_LAMA4_LAMA5_LAMC2_LAMB3_LAMA3-CTTN)
→
Ach R/RAPSYN complex (CHRM1_CHRNA1-RAPSN)
(modification, collaborate)
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BioCarta agrin in postsynaptic differentiation:
agrin/Integrin-alpha/Integrin-beta/dystroglycan 1/SRC/FAK/Paxillin/PKL/PIX/PAKs/dystrophin/actin/laminin/cortactin complex (AGRN-ITGA1-ITGB1-DAG1-SRC-PTK2-PXN-GIT2-ARHGEF6_ARHGEF7-PAK3_PAK7_PAK1_PAK2_PAK6_PAK4-DMD-ACTA1-LAMA1_LAMC3_LAMA2_LAMB1_LAMC1_LAMB2_LAMA4_LAMA5_LAMC2_LAMB3_LAMA3-CTTN)
→
utrophin (UTRN)
(modification, collaborate)
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BioCarta agrin in postsynaptic differentiation:
agrin/Integrin-alpha/Integrin-beta/dystroglycan 1/SRC/FAK/Paxillin/PKL/PIX/PAKs/dystrophin/actin/laminin/cortactin complex (AGRN-ITGA1-ITGB1-DAG1-SRC-PTK2-PXN-GIT2-ARHGEF6_ARHGEF7-PAK3_PAK7_PAK1_PAK2_PAK6_PAK4-DMD-ACTA1-LAMA1_LAMC3_LAMA2_LAMB1_LAMC1_LAMB2_LAMA4_LAMA5_LAMC2_LAMB3_LAMA3-CTTN)
→
agrin/Integrin-alpha/Integrin-beta/dystroglycan 1/SRC/FAK/Paxillin/PKL/PIX/PAKs/dystrophin/actin/laminin/cortactin/Ach R/RAPSYN/utrophin complex (AGRN-ITGA1-ITGB1-DAG1-SRC-PTK2-PXN-GIT2-ARHGEF6_ARHGEF7-PAK3_PAK7_PAK1_PAK2_PAK6_PAK4-DMD-ACTA1-LAMA1_LAMC3_LAMA2_LAMB1_LAMC1_LAMB2_LAMA4_LAMA5_LAMC2_LAMB3_LAMA3-CTTN-CHRM1_CHRNA1-RAPSN-UTRN)
(modification, collaborate)
-
BioCarta agrin in postsynaptic differentiation:
Ach R/RAPSYN complex (CHRM1_CHRNA1-RAPSN)
→
agrin/Integrin-alpha/Integrin-beta/dystroglycan 1/SRC/FAK/Paxillin/PKL/PIX/PAKs/dystrophin/actin/laminin/cortactin/Ach R/RAPSYN/utrophin complex (AGRN-ITGA1-ITGB1-DAG1-SRC-PTK2-PXN-GIT2-ARHGEF6_ARHGEF7-PAK3_PAK7_PAK1_PAK2_PAK6_PAK4-DMD-ACTA1-LAMA1_LAMC3_LAMA2_LAMB1_LAMC1_LAMB2_LAMA4_LAMA5_LAMC2_LAMB3_LAMA3-CTTN-CHRM1_CHRNA1-RAPSN-UTRN)
(modification, collaborate)
-
BioCarta agrin in postsynaptic differentiation:
utrophin (UTRN)
→
agrin/Integrin-alpha/Integrin-beta/dystroglycan 1/SRC/FAK/Paxillin/PKL/PIX/PAKs/dystrophin/actin/laminin/cortactin/Ach R/RAPSYN/utrophin complex (AGRN-ITGA1-ITGB1-DAG1-SRC-PTK2-PXN-GIT2-ARHGEF6_ARHGEF7-PAK3_PAK7_PAK1_PAK2_PAK6_PAK4-DMD-ACTA1-LAMA1_LAMC3_LAMA2_LAMB1_LAMC1_LAMB2_LAMA4_LAMA5_LAMC2_LAMB3_LAMA3-CTTN-CHRM1_CHRNA1-RAPSN-UTRN)
(modification, collaborate)
-
BioCarta agrin in postsynaptic differentiation:
agrin/Integrin-alpha/Integrin-beta/dystroglycan 1/SRC/FAK/Paxillin/PKL/PIX/PAKs/dystrophin/actin/laminin/cortactin complex (AGRN-ITGA1-ITGB1-DAG1-SRC-PTK2-PXN-GIT2-ARHGEF6_ARHGEF7-PAK3_PAK7_PAK1_PAK2_PAK6_PAK4-DMD-ACTA1-LAMA1_LAMC3_LAMA2_LAMB1_LAMC1_LAMB2_LAMA4_LAMA5_LAMC2_LAMB3_LAMA3-CTTN)
→
cortactin (CTTN)
(modification, collaborate)
-
BioCarta agrin in postsynaptic differentiation:
agrin/Integrin-alpha/Integrin-beta/dystroglycan 1/SRC/FAK/Paxillin/PKL/PIX/PAKs/dystrophin/actin/laminin/cortactin complex (AGRN-ITGA1-ITGB1-DAG1-SRC-PTK2-PXN-GIT2-ARHGEF6_ARHGEF7-PAK3_PAK7_PAK1_PAK2_PAK6_PAK4-DMD-ACTA1-LAMA1_LAMC3_LAMA2_LAMB1_LAMC1_LAMB2_LAMA4_LAMA5_LAMC2_LAMB3_LAMA3-CTTN)
→
agrin/Integrin-alpha/Integrin-beta/dystroglycan 1/SRC/FAK/Paxillin/PKL/PIX/PAKs/dystrophin/actin/laminin complex (AGRN-ITGA1-ITGB1-DAG1-SRC-PTK2-PXN-GIT2-ARHGEF6_ARHGEF7-PAK3_PAK7_PAK1_PAK2_PAK6_PAK4-DMD-ACTA1-LAMA1_LAMC3_LAMA2_LAMB1_LAMC1_LAMB2_LAMA4_LAMA5_LAMC2_LAMB3_LAMA3)
(modification, collaborate)
-
BioCarta agrin in postsynaptic differentiation:
cortactin (CTTN)
→
agrin/Integrin-alpha/Integrin-beta/dystroglycan 1/SRC/FAK/Paxillin/PKL/PIX/PAKs/dystrophin/actin/laminin complex (AGRN-ITGA1-ITGB1-DAG1-SRC-PTK2-PXN-GIT2-ARHGEF6_ARHGEF7-PAK3_PAK7_PAK1_PAK2_PAK6_PAK4-DMD-ACTA1-LAMA1_LAMC3_LAMA2_LAMB1_LAMC1_LAMB2_LAMA4_LAMA5_LAMC2_LAMB3_LAMA3)
(modification, collaborate)
Text-mined interactions from Literome
Webb et al., Arch Biochem Biophys 2006
:
However, binding of
cortactin to F-actin is significantly
reduced by
PAK-phosphorylation
Ayala et al., J Cell Sci 2008
(Melanoma...) :
In addition, through a combination of RNA interference and a wide array of cortactin phosphorylation mutants, we were able to show that three convergent regulatory inputs based on the
regulation of
cortactin phosphorylation by Src-family kinases, Erk1/Erk2 and
PAK are necessary for invadopodia formation and extracellular matrix degradation