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Volumn 19, Issue 11, 2009, Pages

Intracellular Signaling: Peripatetic Ras

Author keywords

[No Author keywords available]

Indexed keywords

ISOPROTEIN; RAS PROTEIN;

EID: 66249130661     PISSN: 09609822     EISSN: None     Source Type: Journal    
DOI: 10.1016/j.cub.2009.04.045     Document Type: Short Survey
Times cited : (6)

References (20)
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  • 5
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    • K-ras4B and prenylated proteins lacking "second signals" associate dynamically with cellular membranes
    • Silvius J.R., Bhagatji P., Leventis R., and Terrone D. K-ras4B and prenylated proteins lacking "second signals" associate dynamically with cellular membranes. Mol. Biol. Cell 17 (2006) 192-202
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    • Silvius, J.R.1    Bhagatji, P.2    Leventis, R.3    Terrone, D.4
  • 6
    • 23744505102 scopus 로고    scopus 로고
    • Reversible intracellular translocation of KRas but not HRas in hippocampal neurons regulated by Ca2+/calmodulin
    • Fivaz M., and Meyer T. Reversible intracellular translocation of KRas but not HRas in hippocampal neurons regulated by Ca2+/calmodulin. J. Cell Biol. 170 (2005) 429-441
    • (2005) J. Cell Biol. , vol.170 , pp. 429-441
    • Fivaz, M.1    Meyer, T.2
  • 7
    • 32444441115 scopus 로고    scopus 로고
    • PKC regulates a farnesyl-electrostatic switch on K-Ras that promotes its association with Bcl-XL on mitochondria and induces apoptosis
    • Bivona T.G., Quatela S.E., Bodemann B.O., Ahearn I.O., Soskis M.J., Mor A., Miura J., Wiener H.H., Wright L., Saba S.G., et al. PKC regulates a farnesyl-electrostatic switch on K-Ras that promotes its association with Bcl-XL on mitochondria and induces apoptosis. Mol. Cell 21 (2006) 481-493
    • (2006) Mol. Cell , vol.21 , pp. 481-493
    • Bivona, T.G.1    Quatela, S.E.2    Bodemann, B.O.3    Ahearn, I.O.4    Soskis, M.J.5    Mor, A.6    Miura, J.7    Wiener, H.H.8    Wright, L.9    Saba, S.G.10
  • 11
    • 0035854367 scopus 로고    scopus 로고
    • Endocytosis and signaling. an inseparable partnership
    • Di Fiore P.P., and De Camilli P. Endocytosis and signaling. an inseparable partnership. Cell 106 (2001) 1-4
    • (2001) Cell , vol.106 , pp. 1-4
    • Di Fiore, P.P.1    De Camilli, P.2
  • 12
    • 62549151303 scopus 로고    scopus 로고
    • A phosphoinositide switch controls the maturation and signaling properties of APPL endosomes
    • Zoncu R., Perera R.M., Balkin D.M., Pirruccello M., Toomre D., and De Camilli P. A phosphoinositide switch controls the maturation and signaling properties of APPL endosomes. Cell 136 (2009) 1110-1121
    • (2009) Cell , vol.136 , pp. 1110-1121
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  • 14
    • 0035031938 scopus 로고    scopus 로고
    • Re-localization of activated EGF receptor and its signal transducers to multivesicular compartments downstream of early endosomes in response to EGF
    • Oksvold M.P., Skarpen E., Wierod L., Paulsen R.E., and Huitfeldt H.S. Re-localization of activated EGF receptor and its signal transducers to multivesicular compartments downstream of early endosomes in response to EGF. Eur. J. Cell Biol. 80 (2001) 285-294
    • (2001) Eur. J. Cell Biol. , vol.80 , pp. 285-294
    • Oksvold, M.P.1    Skarpen, E.2    Wierod, L.3    Paulsen, R.E.4    Huitfeldt, H.S.5
  • 17
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    • Ras isoform abundance and signalling in human cancer cell lines
    • Omerovic J., Hammond D.E., Clague M.J., and Prior I.A. Ras isoform abundance and signalling in human cancer cell lines. Oncogene 27 (2008) 2754-2762
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  • 18
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    • H-Ras signaling and K-Ras signaling are differentially dependent on endocytosis
    • Roy S., Wyse B., and Hancock J.F. H-Ras signaling and K-Ras signaling are differentially dependent on endocytosis. Mol. Cell. Biol. 22 (2002) 5128-5140
    • (2002) Mol. Cell. Biol. , vol.22 , pp. 5128-5140
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  • 19
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    • Differential modification of Ras proteins by ubiquitination
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    • (2006) Mol. Cell , vol.21 , pp. 679-687
    • Jura, N.1    Scotto-Lavino, E.2    Sobczyk, A.3    Bar-Sagi, D.4
  • 20
    • 51849163694 scopus 로고    scopus 로고
    • Endosomal targeting of MEK2 requires RAF, MEK kinase activity and clathrin-dependent endocytosis
    • Galperin E., and Sorkin A. Endosomal targeting of MEK2 requires RAF, MEK kinase activity and clathrin-dependent endocytosis. Traffic 9 (2008) 1776-1790
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    • Galperin, E.1    Sorkin, A.2


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.