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      KCI등재 SCOPUS SCIE

      Dynamic Localization of the Actin-Bundling Pro-tein Cortexillin I during Cell Migration

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      https://www.riss.kr/link?id=A103927056

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      다국어 초록 (Multilingual Abstract)

      Cortexillins are actin-bundling proteins that play a critical role in regulating cell morphology and actin cytoskeleton reorganization in Dictyostelium. Here, we investigated dynamic subcellular localization of cortexillin I in chemo-taxing Dictyostelium cells. Most of the cortexillin I was enriched on the lateral sides of moving cells. Upon che-moattractant stimulation, cortexillin I was rapidly re-leased from the cortex followed by a transient transloca-tion to the cell cortex with a peak at ~5 s and a subsequent decrease to basal levels, indicating that localization of cor-texillin I at the cortex in chemotaxing cells is controlled by two more signaling components, one for the initial delocalization from the cortex and another for the translocation to the cortex ~5 s after chemoattractant stimulation. Loss of cortexillins leads to reduced cell polarity and an in-creased number of lateral pseudopodia during chemotaxis, suggesting that cortexillins play an inhibitory role in producing pseudopodia along the lateral sides of the cell. Cells lacking cortexillins displayed extended chemoattrac-tant-mediated Arp2/3 complex translocation kinetics to the cortex. Our present study provides a new insight into the function of cortexillins during reorganization of the actin cytoskeleton and cell migration.
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      Cortexillins are actin-bundling proteins that play a critical role in regulating cell morphology and actin cytoskeleton reorganization in Dictyostelium. Here, we investigated dynamic subcellular localization of cortexillin I in chemo-taxing Dictyostel...

      Cortexillins are actin-bundling proteins that play a critical role in regulating cell morphology and actin cytoskeleton reorganization in Dictyostelium. Here, we investigated dynamic subcellular localization of cortexillin I in chemo-taxing Dictyostelium cells. Most of the cortexillin I was enriched on the lateral sides of moving cells. Upon che-moattractant stimulation, cortexillin I was rapidly re-leased from the cortex followed by a transient transloca-tion to the cell cortex with a peak at ~5 s and a subsequent decrease to basal levels, indicating that localization of cor-texillin I at the cortex in chemotaxing cells is controlled by two more signaling components, one for the initial delocalization from the cortex and another for the translocation to the cortex ~5 s after chemoattractant stimulation. Loss of cortexillins leads to reduced cell polarity and an in-creased number of lateral pseudopodia during chemotaxis, suggesting that cortexillins play an inhibitory role in producing pseudopodia along the lateral sides of the cell. Cells lacking cortexillins displayed extended chemoattrac-tant-mediated Arp2/3 complex translocation kinetics to the cortex. Our present study provides a new insight into the function of cortexillins during reorganization of the actin cytoskeleton and cell migration.

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      참고문헌 (Reference)

      1 Kolsch, V., "The regulation of cell motility and chemotaxis by phospholipid signaling" 21 : 551-559, 2008

      2 Faix, J., "The actin-bundling protein cortexillin is the downstream target of a Rac1-signaling pathway required for cytokinesis" 23 : 765-772, 2002

      3 Funamoto, S., "Spatial and temporal regulation of 3-phosphoinositides by PI 3-kinase and PTEN mediates chemotaxis" 109 : 611-623, 2002

      4 Mondal, S., "Regulation of the actin cytoskeleton by an interaction of IQGAP related protein GAPA with filamin and cortexillin I" 5 : 15440-, 2010

      5 Sasaki, A.T., "Regulation of chemotaxis by the orchestrated activation of Ras, PI3K, and TOR" 85 : 873-895, 2006

      6 Raftopoulou, M., "Regulation of cell migration by the C2 domain of the tumor suppressor PTEN" 303 : 1179-1181, 2004

      7 Jeon, T.J., "Regulation of Rap1 activity by RapGAP1 controls cell adhesion at the front of chemotaxing cells" 179 : 833-843, 2007

      8 Jeon, T.J., "Regulation of Dictyostelium morphogenesis by RapGAP3" 328 : 210-220, 2009

      9 Sung Haeng Lee, "Regulation of Actin Cytoskeleton Dynamics in Cells" 한국분자세포생물학회 29 (29): 311-325, 2010

      10 Faix, J., "Recruitment of cortexillin into the cleavage furrow is controlled by Rac1 and IQGAP-related proteins" 20 : 3705-3715, 2001

      1 Kolsch, V., "The regulation of cell motility and chemotaxis by phospholipid signaling" 21 : 551-559, 2008

      2 Faix, J., "The actin-bundling protein cortexillin is the downstream target of a Rac1-signaling pathway required for cytokinesis" 23 : 765-772, 2002

      3 Funamoto, S., "Spatial and temporal regulation of 3-phosphoinositides by PI 3-kinase and PTEN mediates chemotaxis" 109 : 611-623, 2002

      4 Mondal, S., "Regulation of the actin cytoskeleton by an interaction of IQGAP related protein GAPA with filamin and cortexillin I" 5 : 15440-, 2010

      5 Sasaki, A.T., "Regulation of chemotaxis by the orchestrated activation of Ras, PI3K, and TOR" 85 : 873-895, 2006

      6 Raftopoulou, M., "Regulation of cell migration by the C2 domain of the tumor suppressor PTEN" 303 : 1179-1181, 2004

      7 Jeon, T.J., "Regulation of Rap1 activity by RapGAP1 controls cell adhesion at the front of chemotaxing cells" 179 : 833-843, 2007

      8 Jeon, T.J., "Regulation of Dictyostelium morphogenesis by RapGAP3" 328 : 210-220, 2009

      9 Sung Haeng Lee, "Regulation of Actin Cytoskeleton Dynamics in Cells" 한국분자세포생물학회 29 (29): 311-325, 2010

      10 Faix, J., "Recruitment of cortexillin into the cleavage furrow is controlled by Rac1 and IQGAP-related proteins" 20 : 3705-3715, 2001

      11 Jeon, T.J., "Rap1 controls cell adhesion and cell motility through the regulation of myosin II" 176 : 2021-2033, 2007

      12 Schroth-Diez, B., "Propagating waves separate two states of actin organization in living cells" 3 : 412-427, 2009

      13 Chung, C.Y., "PAKa, a putative PAK family member, is required for cytokinesis and the regulation of the cytoskeleton in Dictyostelium discoideum cells during chemotaxis" 147 : 559-576, 1999

      14 Firat-Karalar, E.N., "New mechanisms and functions of actin nucleation" 23 : 4-13, 2011

      15 Ren, Y., "Mechanosensing through cooperative interactions between myosin II and the actin crosslinker cortexillin I" 19 : 1421-1428, 2009

      16 Sasaki, A.T., "Localized Ras signaling at the leading edge regulates PI3K, cell polarity, and directional cell movement" 167 : 505-518, 2004

      17 Lee, S., "Involvement of the cytoskeleton in controlling leading-edge function during chemotaxis" 21 : 1810-1824, 2010

      18 Chisholm, R.L., "Insights into morphogenesis from a simple developmental system" 5 : 531-541, 2004

      19 Kortholt, A., "Highlighting the role of Ras and Rap during Dictyostelium chemotaxis" 20 : 1415-1422, 2008

      20 Uchida, K.S., "Dynamics of novel feet of Dictyostelium cells during migration" 117 : 1443-1455, 2004

      21 Stock, A., "Domain analysis of cortexillin I: actin-bundling, PIP(2)-binding and the rescue of cytokinesis" 18 : 5274-5284, 1999

      22 Weber, I., "Cytokinesis mediated through the recruitment of cortexillins into the cleavage furrow" 18 : 586-594, 1999

      23 Faix, J., "Cortexillins,major determinants of cell shape and size,are actinbundling proteins with a parallel coiled-coil tail" 86 : 631-642, 1996

      24 Rodal, A.A., "Conformational changes in the Arp2/3 complex leading to actin nucleation" 12 : 26-31, 2005

      25 Gerisch, G., "Chemoattractant-controlled accumulation of coronin at the leading edge of Dictyostelium cells monitored using a green fluorescent protein-coronin fusion protein" 5 : 1280-1285, 1995

      26 Injun Cha, "Chemoattractant-Mediated Rap1 Activation Requires GPCR/G Proteins" 한국분자세포생물학회 30 (30): 563-567, 2010

      27 Ridley, A.J., "Cell migration:integrating signals from front to back" 302 : 1704-1709, 2003

      28 Heinrich, D., "Actin-cytoskeleton dynamics in non-monotonic cell spreading" 2 : 58-68, 2008

      29 Charest, P.G., "A Ras signaling complex controls the RasC-TORC2 pathway and directed cell migration" 18 : 737-749, 2010

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      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
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      2008-01-01 평가 SCI 등재 (등재유지) KCI등재
      2006-01-01 평가 등재학술지 유지 (등재유지) KCI등재
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 2.77 0.19 1.85
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
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