Semaphorin interactions (Homo sapiens)
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Description
Semaphorins are a large family of cell surface and secreted guidance molecules divided into eight classes on the basis of their structures. They all have an N-terminal conserved sema domain. Semaphorins signal through multimeric receptor complexes that include other proteins such as plexins and neuropilins.
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- Oinuma I, Katoh H, Harada A, Negishi M.; ''Direct interaction of Rnd1 with Plexin-B1 regulates PDZ-RhoGEF-mediated Rho activation by Plexin-B1 and induces cell contraction in COS-7 cells.''; PubMed Europe PMC Scholia
- Raper JA.; ''Semaphorins and their receptors in vertebrates and invertebrates.''; PubMed Europe PMC Scholia
- Kumanogoh A, Watanabe C, Lee I, Wang X, Shi W, Araki H, Hirata H, Iwahori K, Uchida J, Yasui T, Matsumoto M, Yoshida K, Yakura H, Pan C, Parnes JR, Kikutani H.; ''Identification of CD72 as a lymphocyte receptor for the class IV semaphorin CD100: a novel mechanism for regulating B cell signaling.''; PubMed Europe PMC Scholia
- Dickson BJ.; ''Molecular mechanisms of axon guidance.''; PubMed Europe PMC Scholia
- Pasterkamp RJ, Verhaagen J.; ''Semaphorins in axon regeneration: developmental guidance molecules gone wrong?''; PubMed Europe PMC Scholia
- Sebbagh M, Hamelin J, Bertoglio J, Solary E, Bréard J.; ''Direct cleavage of ROCK II by granzyme B induces target cell membrane blebbing in a caspase-independent manner.''; PubMed Europe PMC Scholia
- Takegahara N, Takamatsu H, Toyofuku T, Tsujimura T, Okuno T, Yukawa K, Mizui M, Yamamoto M, Prasad DV, Suzuki K, Ishii M, Terai K, Moriya M, Nakatsuji Y, Sakoda S, Sato S, Akira S, Takeda K, Inui M, Takai T, Ikawa M, Okabe M, Kumanogoh A, Kikutani H.; ''Plexin-A1 and its interaction with DAP12 in immune responses and bone homeostasis.''; PubMed Europe PMC Scholia
- Yoshimura T, Kawano Y, Arimura N, Kawabata S, Kikuchi A, Kaibuchi K.; ''GSK-3beta regulates phosphorylation of CRMP-2 and neuronal polarity.''; PubMed Europe PMC Scholia
- Gatti A, Huang Z, Tuazon PT, Traugh JA.; ''Multisite autophosphorylation of p21-activated protein kinase gamma-PAK as a function of activation.''; PubMed Europe PMC Scholia
- Toyofuku T, Yoshida J, Sugimoto T, Zhang H, Kumanogoh A, Hori M, Kikutani H.; ''FARP2 triggers signals for Sema3A-mediated axonal repulsion.''; PubMed Europe PMC Scholia
- Leung T, Chen XQ, Manser E, Lim L.; ''The p160 RhoA-binding kinase ROK alpha is a member of a kinase family and is involved in the reorganization of the cytoskeleton.''; PubMed Europe PMC Scholia
- Tanna AP, Johnson M.; ''Rho Kinase Inhibitors as a Novel Treatment for Glaucoma and Ocular Hypertension.''; PubMed Europe PMC Scholia
- Coleman ML, Sahai EA, Yeo M, Bosch M, Dewar A, Olson MF.; ''Membrane blebbing during apoptosis results from caspase-mediated activation of ROCK I.''; PubMed Europe PMC Scholia
- Billard C, Delaire S, Raffoux E, Bensussan A, Boumsell L.; ''Switch in the protein tyrosine phosphatase associated with human CD100 semaphorin at terminal B-cell differentiation stage.''; PubMed Europe PMC Scholia
- Swiercz JM, Worzfeld T, Offermanns S.; ''ErbB-2 and met reciprocally regulate cellular signaling via plexin-B1.''; PubMed Europe PMC Scholia
- Amano M, Ito M, Kimura K, Fukata Y, Chihara K, Nakano T, Matsuura Y, Kaibuchi K.; ''Phosphorylation and activation of myosin by Rho-associated kinase (Rho-kinase).''; PubMed Europe PMC Scholia
- Uchida Y, Ohshima T, Sasaki Y, Suzuki H, Yanai S, Yamashita N, Nakamura F, Takei K, Ihara Y, Mikoshiba K, Kolattukudy P, Honnorat J, Goshima Y.; ''Semaphorin3A signalling is mediated via sequential Cdk5 and GSK3beta phosphorylation of CRMP2: implication of common phosphorylating mechanism underlying axon guidance and Alzheimer's disease.''; PubMed Europe PMC Scholia
- Aizawa H, Wakatsuki S, Ishii A, Moriyama K, Sasaki Y, Ohashi K, Sekine-Aizawa Y, Sehara-Fujisawa A, Mizuno K, Goshima Y, Yahara I.; ''Phosphorylation of cofilin by LIM-kinase is necessary for semaphorin 3A-induced growth cone collapse.''; PubMed Europe PMC Scholia
- Edwards DC, Sanders LC, Bokoch GM, Gill GN.; ''Activation of LIM-kinase by Pak1 couples Rac/Cdc42 GTPase signalling to actin cytoskeletal dynamics.''; PubMed Europe PMC Scholia
- Gu C, Yoshida Y, Livet J, Reimert DV, Mann F, Merte J, Henderson CE, Jessell TM, Kolodkin AL, Ginty DD.; ''Semaphorin 3E and plexin-D1 control vascular pattern independently of neuropilins.''; PubMed Europe PMC Scholia
- Ishida I, Kumanogoh A, Suzuki K, Akahani S, Noda K, Kikutani H.; ''Involvement of CD100, a lymphocyte semaphorin, in the activation of the human immune system via CD72: implications for the regulation of immune and inflammatory responses.''; PubMed Europe PMC Scholia
- Pasterkamp RJ, Kolodkin AL.; ''Semaphorin junction: making tracks toward neural connectivity.''; PubMed Europe PMC Scholia
- Herold C, Elhabazi A, Bismuth G, Bensussan A, Boumsell L.; ''CD100 is associated with CD45 at the surface of human T lymphocytes. Role in T cell homotypic adhesion.''; PubMed Europe PMC Scholia
- Sumi T, Matsumoto K, Nakamura T.; ''Specific activation of LIM kinase 2 via phosphorylation of threonine 505 by ROCK, a Rho-dependent protein kinase.''; PubMed Europe PMC Scholia
- Nakamura F, Kalb RG, Strittmatter SM.; ''Molecular basis of semaphorin-mediated axon guidance.''; PubMed Europe PMC Scholia
- Garnock-Jones KP.; ''Ripasudil: first global approval.''; PubMed Europe PMC Scholia
- Li R, Soosairajah J, Harari D, Citri A, Price J, Ng HL, Morton CJ, Parker MW, Yarden Y, Bernard O.; ''Hsp90 increases LIM kinase activity by promoting its homo-dimerization.''; PubMed Europe PMC Scholia
- Toyofuku T, Yabuki M, Kamei J, Kamei M, Makino N, Kumanogoh A, Hori M.; ''Semaphorin-4A, an activator for T-cell-mediated immunity, suppresses angiogenesis via Plexin-D1.''; PubMed Europe PMC Scholia
- Ikebe M, Koretz J, Hartshorne DJ.; ''Effects of phosphorylation of light chain residues threonine 18 and serine 19 on the properties and conformation of smooth muscle myosin.''; PubMed Europe PMC Scholia
- Ling K, Doughman RL, Firestone AJ, Bunce MW, Anderson RA.; ''Type I gamma phosphatidylinositol phosphate kinase targets and regulates focal adhesions.''; PubMed Europe PMC Scholia
- Aurandt J, Vikis HG, Gutkind JS, Ahn N, Guan KL.; ''The semaphorin receptor plexin-B1 signals through a direct interaction with the Rho-specific nucleotide exchange factor, LARG.''; PubMed Europe PMC Scholia
- Swiercz JM, Kuner R, Offermanns S.; ''Plexin-B1/RhoGEF-mediated RhoA activation involves the receptor tyrosine kinase ErbB-2.''; PubMed Europe PMC Scholia
- Tamagnone L, Artigiani S, Chen H, He Z, Ming GI, Song H, Chedotal A, Winberg ML, Goodman CS, Poo M, Tessier-Lavigne M, Comoglio PM.; ''Plexins are a large family of receptors for transmembrane, secreted, and GPI-anchored semaphorins in vertebrates.''; PubMed Europe PMC Scholia
- Artigiani S, Conrotto P, Fazzari P, Gilestro GF, Barberis D, Giordano S, Comoglio PM, Tamagnone L.; ''Plexin-B3 is a functional receptor for semaphorin 5A.''; PubMed Europe PMC Scholia
- Ishizaki T, Maekawa M, Fujisawa K, Okawa K, Iwamatsu A, Fujita A, Watanabe N, Saito Y, Kakizuka A, Morii N, Narumiya S.; ''The small GTP-binding protein Rho binds to and activates a 160 kDa Ser/Thr protein kinase homologous to myotonic dystrophy kinase.''; PubMed Europe PMC Scholia
- Bernard O.; ''Lim kinases, regulators of actin dynamics.''; PubMed Europe PMC Scholia
- Bernard O, Ganiatsas S, Kannourakis G, Dringen R.; ''Kiz-1, a protein with LIM zinc finger and kinase domains, is expressed mainly in neurons.''; PubMed Europe PMC Scholia
- Barberis D, Casazza A, Sordella R, Corso S, Artigiani S, Settleman J, Comoglio PM, Tamagnone L.; ''p190 Rho-GTPase activating protein associates with plexins and it is required for semaphorin signalling.''; PubMed Europe PMC Scholia
- Vikis HG, Li W, He Z, Guan KL.; ''The semaphorin receptor plexin-B1 specifically interacts with active Rac in a ligand-dependent manner.''; PubMed Europe PMC Scholia
- Ohashi K, Nagata K, Maekawa M, Ishizaki T, Narumiya S, Mizuno K.; ''Rho-associated kinase ROCK activates LIM-kinase 1 by phosphorylation at threonine 508 within the activation loop.''; PubMed Europe PMC Scholia
- Araki S, Ito M, Kureishi Y, Feng J, Machida H, Isaka N, Amano M, Kaibuchi K, Hartshorne DJ, Nakano T.; ''Arachidonic acid-induced Ca2+ sensitization of smooth muscle contraction through activation of Rho-kinase.''; PubMed Europe PMC Scholia
- Giordano S, Corso S, Conrotto P, Artigiani S, Gilestro G, Barberis D, Tamagnone L, Comoglio PM.; ''The semaphorin 4D receptor controls invasive growth by coupling with Met.''; PubMed Europe PMC Scholia
- Halloran MC, Wolman MA.; ''Repulsion or adhesion: receptors make the call.''; PubMed Europe PMC Scholia
- Oinuma I, Katoh H, Negishi M.; ''Semaphorin 4D/Plexin-B1-mediated R-Ras GAP activity inhibits cell migration by regulating beta(1) integrin activity.''; PubMed Europe PMC Scholia
- Ahmed A, Eickholt BJ.; ''Intracellular kinases in semaphorin signaling.''; PubMed Europe PMC Scholia
- Hirotani M, Ohoka Y, Yamamoto T, Nirasawa H, Furuyama T, Kogo M, Matsuya T, Inagaki S.; ''Interaction of plexin-B1 with PDZ domain-containing Rho guanine nucleotide exchange factors.''; PubMed Europe PMC Scholia
- Zhou Y, Gunput RA, Pasterkamp RJ.; ''Semaphorin signaling: progress made and promises ahead.''; PubMed Europe PMC Scholia
- Watanabe T, Hosoya H, Yonemura S.; ''Regulation of myosin II dynamics by phosphorylation and dephosphorylation of its light chain in epithelial cells.''; PubMed Europe PMC Scholia
- Sasaki Y, Cheng C, Uchida Y, Nakajima O, Ohshima T, Yagi T, Taniguchi M, Nakayama T, Kishida R, Kudo Y, Ohno S, Nakamura F, Goshima Y.; ''Fyn and Cdk5 mediate semaphorin-3A signaling, which is involved in regulation of dendrite orientation in cerebral cortex.''; PubMed Europe PMC Scholia
- Chong C, Tan L, Lim L, Manser E.; ''The mechanism of PAK activation. Autophosphorylation events in both regulatory and kinase domains control activity.''; PubMed Europe PMC Scholia
- Sturdivant JM, Royalty SM, Lin CW, Moore LA, Yingling JD, Laethem CL, Sherman B, Heintzelman GR, Kopczynski CC, deLong MA.; ''Discovery of the ROCK inhibitor netarsudil for the treatment of open-angle glaucoma.''; PubMed Europe PMC Scholia
- Ueda K, Murata-Hori M, Tatsuka M, Hosoya H.; ''Rho-kinase contributes to diphosphorylation of myosin II regulatory light chain in nonmuscle cells.''; PubMed Europe PMC Scholia
- Mitsui N, Inatome R, Takahashi S, Goshima Y, Yamamura H, Yanagi S.; ''Involvement of Fes/Fps tyrosine kinase in semaphorin3A signaling.''; PubMed Europe PMC Scholia
- Koncina E, Roth L, Gonthier B, Bagnard D.; ''Role of semaphorins during axon growth and guidance.''; PubMed Europe PMC Scholia
- Ito Y, Oinuma I, Katoh H, Kaibuchi K, Negishi M.; ''Sema4D/plexin-B1 activates GSK-3beta through R-Ras GAP activity, inducing growth cone collapse.''; PubMed Europe PMC Scholia
- Pandey D, Pandey D, Goyal P, Bamburg JR, Siess W.; ''Regulation of LIM-kinase 1 and cofilin in thrombin-stimulated platelets.''; PubMed Europe PMC Scholia
- Ikebe M, Hartshorne DJ.; ''Phosphorylation of smooth muscle myosin at two distinct sites by myosin light chain kinase.''; PubMed Europe PMC Scholia
- Deo RC, Schmidt EF, Elhabazi A, Togashi H, Burley SK, Strittmatter SM.; ''Structural bases for CRMP function in plexin-dependent semaphorin3A signaling.''; PubMed Europe PMC Scholia
- Schmidt EF, Strittmatter SM.; ''The CRMP family of proteins and their role in Sema3A signaling.''; PubMed Europe PMC Scholia
- Vikis HG, Li W, Guan KL.; ''The plexin-B1/Rac interaction inhibits PAK activation and enhances Sema4D ligand binding.''; PubMed Europe PMC Scholia
- Whitford KL, Ghosh A.; ''Plexin signaling via off-track and rho family GTPases.''; PubMed Europe PMC Scholia
History
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External references
DataNodes
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Name | Type | Database reference | Comment |
---|---|---|---|
ADP | Metabolite | 16761 (ChEBI) | |
ATP | Metabolite | 15422 (ChEBI) | |
Activated ROCK:
RhoA/B/C:GTP | Complex | REACT_19928 (Reactome) | |
Active LIMK1 | Complex | REACT_19790 (Reactome) | |
CD72 | Protein | P21854 (UniProt) | |
CRMP's tetramers | Complex | REACT_19835 (Reactome) | |
Cdk5:p35 | Complex | REACT_19863 (Reactome) | |
Cofilin-1 | Protein | P23528 (UniProt) | |
FARP2 | Protein | O94887 (UniProt) | |
FARP2:PIP5KIgamma | Complex | REACT_19748 (Reactome) | |
FES | Protein | P07332 (UniProt) | |
GDP | Metabolite | 17552 (ChEBI) | |
GRLF1/p190-A
variant 1 | Protein | Q9NRY4 (UniProt) | |
GSK3B_1 | Protein | P49841-1 (UniProt) | |
GTP | Metabolite | 15996 (ChEBI) | |
HSP-90 | Protein | REACT_19960 (Reactome) | |
Integrin alpha1beta1 | Complex | REACT_14015 (Reactome) | |
LARG and PDZ-
RhoGEF | Protein | REACT_20012 (Reactome) | |
LIM Kinases | Protein | REACT_20207 (Reactome) | |
LIM Kinases,
phosphorylated | Protein | REACT_19576 (Reactome) | |
LIM domain kinase 1
(LIMK-1) | Protein | P53667 (UniProt) | |
Leukocyte common
antigen precursor | Protein | P08575 (UniProt) | |
Neuropilin-1 | Protein | O14786-1 (UniProt) | |
Nrp-1 complexed
with PlexinA:FARP2: Fyn | Complex | REACT_20390 (Reactome) | |
Nrp-1 complexed
with PlexinA:Fyn | Complex | REACT_20319 (Reactome) | |
Orthophosphate | Metabolite | 18367 (ChEBI) | |
PAK | Protein | REACT_19640 (Reactome) | |
PAK homodimer | Complex | REACT_19479 (Reactome) | |
PIP5K1gamma:
Talin-1 | Complex | REACT_19891 (Reactome) | |
Phospho-activated
smooth muscle/non- muscle myosin 2 | Complex | REACT_19704 (Reactome) | Nonmuscle myosin II (NMM2) is an actin-based motor protein that plays a crucial role in a variety of cellular processes, including cell migration, polarity formation, and cytokinesis. NMM2 consists of two myosin heavy chains encoded by MYH9, MYH10 or MYH14 (NMHC-IIA, B and C), two copies of MYL6 essential light chain protein, and two regulatory light chains (MRLCs), MYL9 and MYLC2B. Myosin II activity is stimulated by phosphorylation of MRLC. Diphosphorylation at Thr-19 and Ser-20 increases both actin-activated Mg2+ ATPase activity and the stability of myosin II filaments; monophosphorylation at Ser-20 is less effective. Kinases responsible for the phosphorylation include myosin light chain kinase (MLCK), ROCK kinase, citron kinase, myotonic dystrophy kinase-related CDC42-binding protein kinase, and Zipper-interacting protein (ZIP) kinase. ROCK activity has been shown to regulate MRLC phosphorylation by directly mono- (Amano et al., 1996) or di- (Ueda et al., 2002) phosphorylating MRLC. |
Plexin D1 precursor | Protein | Q9Y4D7 (UniProt) | |
Plexin-A (2 and 4) | Protein | REACT_20091 (Reactome) | |
Plexin-A1-Trem2-
DAP12 | Complex | REACT_20126 (Reactome) | |
Plexin-A1:Sema6D:
Trem2:DAP12 | Complex | REACT_19554 (Reactome) | |
Plexin-A:Fyn | Complex | REACT_19507 (Reactome) | |
Plexin-B1:ErbB2 | Complex | REACT_19954 (Reactome) | |
Plexin-B1:Met | Complex | REACT_19866 (Reactome) | |
Plexin-B3 | Protein | Q9ULL4 (UniProt) | |
Plexin-C1 | Protein | O60486 (UniProt) | |
R-Ras-GDP | Complex | REACT_20329 (Reactome) | |
R-Ras-GTP | Complex | REACT_20411 (Reactome) | |
RAC1-GDP | Complex | REACT_22018 (Reactome) | |
RAC1-GTP | Complex | REACT_21594 (Reactome) | |
ROCK | Protein | REACT_20281 (Reactome) | ROCK I (alternatively called ROK ?) and ROCK II (also known as Rho kinase or ROK ?) were originally isolated as RhoA-GTP interacting proteins. The kinase domains of ROCK I and ROCK II are 92% identical, and so far there is no evidence that they phosphorylate different substrates. RhoA, RhoB, and RhoC associate with and activate ROCK but other GTP-binding proteins can be inhibitors, e.g. RhoE, Rad and Gem. PDK1 kinase promotes ROCK I activity not through phosphorylation but by blocking RhoE association. PLK1 can phosphorylate ROCK II and this enhances the effect of RhoA. Arachidonic acid can activate ROCK independently of Rho. |
RhoA (Mg cofactor):
GDP | Complex | REACT_13852 (Reactome) | |
RhoA (Mg cofactor):
GTP | Complex | REACT_14306 (Reactome) | |
RhoA,B,C:GDP | Complex | REACT_20118 (Reactome) | |
RhoA/B/C:GTP | Complex | REACT_19589 (Reactome) | |
Rnd1-GTP | Complex | REACT_20300 (Reactome) | |
SEMA4D dimer | Complex | REACT_19817 (Reactome) | |
SEMA4D:CD45
complex | Complex | REACT_19862 (Reactome) | |
SEMA4D:CD72
complex | Complex | REACT_20194 (Reactome) | |
SEMA4D:pPlexin-B1:
ErbB2 complex | Complex | REACT_20256 (Reactome) | |
SEMA5A | Protein | Q13591 (UniProt) | |
SEMA7A | Protein | O75326 (UniProt) | |
Sema3A dimer | Complex | REACT_19939 (Reactome) | |
Sema3A:NP-1:
Plexin-A:Fes:CRMP | Complex | REACT_20015 (Reactome) | |
Sema3A:NRP-1:
pPlexin-A:Fyn:Fes | Complex | REACT_19958 (Reactome) | |
Sema3A:Nrp-1:
Plexin A:Fyn | Complex | REACT_19816 (Reactome) | |
Sema3A:Nrp-1:
PlexinA:Fyn | Complex | REACT_20413 (Reactome) | |
Sema3A:Nrp-1:
PlexinA:Fyn:Cdk5: pCRMP's | Complex | REACT_19706 (Reactome) | |
Sema3A:Nrp-1:
PlexinA:Fyn:Cdk5: pCRMP's | Complex | REACT_20425 (Reactome) | |
Sema3A:Nrp-1:
PlexinA:Fyn:pCdk5 | Complex | REACT_20429 (Reactome) | |
Sema3A:Nrp-1:
PlexinA:Rac1-GTP: PAK | Complex | REACT_20083 (Reactome) | |
Sema3A:Nrp-1:
PlexinA:Rac1-GTP: pPAK | Complex | REACT_19495 (Reactome) | |
Sema3A:Nrp-1:
pPlexinA:Fyn:Fes: Rac-1-GTP | Complex | REACT_20187 (Reactome) | |
Sema3A:Nrp-1:
pPlexinA:Fyn:Fes: Rac-1-GTP:Rnd1 | Complex | REACT_19802 (Reactome) | |
Sema3E bound to
Plexin D1 receptor | Complex | REACT_20367 (Reactome) | |
Sema4A:Plexin-D1 | Complex | REACT_19803 (Reactome) | |
Sema4D:Plexin-B1:
Rac-Rnd1: LARG/PDZ-RhoGEF | Complex | REACT_20349 (Reactome) | |
Sema4D:Plexin-B1:
p190RhoGAP:Rac: Rnd1 | Complex | REACT_19579 (Reactome) | |
Sema4D:pPlexin-B1:
ErbB2:Rac1:Rnd1 | Complex | REACT_19890 (Reactome) | |
Sema4D:pPlexin-B1:
Met | Complex | REACT_19905 (Reactome) | |
Sema4D:pPlexin-B1:
Met:RAC1-GTP | Complex | REACT_20028 (Reactome) | |
Sema4D:pPlexin-B1:
Met:Rnd1 | Complex | REACT_19721 (Reactome) | |
Sema5A:Plexin-B3 | Complex | REACT_19434 (Reactome) | |
Sema6A:Plexin-A
(2and 4) | Complex | REACT_19923 (Reactome) | |
Sema7A:Integrin
alpha1beta1 | Complex | REACT_20443 (Reactome) | |
Sema7A:Plexin-C1 | Complex | REACT_20419 (Reactome) | |
Semaphorin 3E
precursor | Protein | O15041 (UniProt) | |
Semaphorin 4A
precursor | Protein | Q9H3S1 (UniProt) | |
Semaphorin 4D | Protein | Q92854 (UniProt) | |
Semaphorin-6A | Protein | Q9H2E6 (UniProt) | |
Semaphorin-6D | Protein | Q8NFY4 (UniProt) | |
Smooth muscle/non-
muscle myosin II | Complex | REACT_19969 (Reactome) | Class 2 myosins are a set of protein complexes that bind actin and hydrolyse ATP, acting as molecular motors. They consist of two myosin heavy chains , two essential light chains and two regulatory light chains (MRLCs). Smooth muscle and non-muscle myosin isoforms are a subset of Class 2 myosin complexes. The nomenclature for isoforms is misleading, as non-muscle isoforms can be found in smooth muscle. The 4 smooth muscle isoforms all have heavy chains encoded by MYH11. The non-muscle isoforms have heavy chains encoded by MYH9, MYH10 or MYH14 (NMHC-IIA, B and C). The essential light chain (LC17) common to smooth and non-muscle isoforms is encoded by MYL6. The regulatory light chain (LC20) is encoded by either MYL9, giving a slightly more basic protein that is referred to as the smooth muscle LC20 isoform, and MRLC2, giving a more acidic isoform referred to as the non-muscle LC20 isoform. Class 2 myosins play a crucial role in a variety of cellular processes, including cell migration, polarity formation, and cytokinesis. |
Talin-1 | Protein | Q9Y490 (UniProt) | |
pCofilin: Active
LIMK-1 | Complex | REACT_20103 (Reactome) | |
pLIMK dimer:HSP-90 | Complex | REACT_19543 (Reactome) | |
pLIMK-1 (T508) | Protein | P53667 (UniProt) |
Annotated Interactions
No annotated interactions