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      KCI등재 SCOPUS SCIE

      Adseverin mediates RANKL-induced osteoclastogenesis by regulating NFATc1

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      https://www.riss.kr/link?id=A104088748

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      다국어 초록 (Multilingual Abstract)

      Adseverin is a Ca2+-dependent actin filament-severing protein that has been reported to regulate exocytosis via rearrangements of the actin cytoskeleton in secretory cells. However, the role of adseverin in bone cells has not yet been well characterized. Here, we investigated the role of adseverin in osteoclastogenesis using primary osteoclast precursor cells. Adseverin expression was upregulated during RANKL (receptor activator of nuclear factor-κB ligand)-induced osteoclast differentiation. Moreover, genetic silencing of adseverin decreased the number of osteoclasts generated by RANKL. Adseverin knockdown also suppressed the RANKL-mediated induction of nuclear factor of activated T-cell c1 (NFATc1), which is a key transcription factor in osteoclastogenesis. In addition, adseverin knockdown impaired bone resorption and the secretion of bone-degrading enzymes from osteoclasts. These effects were accompanied by decreased NFATc1 expression and the activation of nuclear factor-κB. Collectively, our results indicate that adseverin has a crucial role in osteoclastogenesis by regulating NFATc1.
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      Adseverin is a Ca2+-dependent actin filament-severing protein that has been reported to regulate exocytosis via rearrangements of the actin cytoskeleton in secretory cells. However, the role of adseverin in bone cells has not yet been well characteriz...

      Adseverin is a Ca2+-dependent actin filament-severing protein that has been reported to regulate exocytosis via rearrangements of the actin cytoskeleton in secretory cells. However, the role of adseverin in bone cells has not yet been well characterized. Here, we investigated the role of adseverin in osteoclastogenesis using primary osteoclast precursor cells. Adseverin expression was upregulated during RANKL (receptor activator of nuclear factor-κB ligand)-induced osteoclast differentiation. Moreover, genetic silencing of adseverin decreased the number of osteoclasts generated by RANKL. Adseverin knockdown also suppressed the RANKL-mediated induction of nuclear factor of activated T-cell c1 (NFATc1), which is a key transcription factor in osteoclastogenesis. In addition, adseverin knockdown impaired bone resorption and the secretion of bone-degrading enzymes from osteoclasts. These effects were accompanied by decreased NFATc1 expression and the activation of nuclear factor-κB. Collectively, our results indicate that adseverin has a crucial role in osteoclastogenesis by regulating NFATc1.

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      참고문헌 (Reference)

      1 Valledor AF, "Transcription factors that regulate monocyte/macrophage differentiation" 63 : 405-417, 1998

      2 Chumnarnsilpa S, "The crystal structure of the C-terminus of adseverin reveals the actin-binding interface" 106 : 13719-13724, 2009

      3 Vaananen HK, "The cell biology of osteoclast function" 113 (113): 377-381, 2000

      4 Wang D, "Suppression of SCIN inhibits human prostate cancer cell proliferation and induces G0/G1phase arrest" 44 : 161-166, 2014

      5 Ting HJ, "Supervillin associates with androgen receptor and modulates its transcriptional activity" 99 : 661-666, 2002

      6 Nurminsky D, "Regulation of chondrocyte differentiation by actin-severing protein adseverin" 302 : 427-437, 2007

      7 김정하, "Regulation of NFATc1 in Osteoclast Differentiation" 대한골대사학회 21 (21): 233-241, 2014

      8 Zhang L, "Recombinant scinderin enhances exocytosis, an effect blocked by two scinderin-derived actinbinding peptides and PIP2" 17 : 287-296, 1996

      9 Cremasco V, "Protein kinase C-delta deficiency perturbs bone homeostasis by selective uncoupling of cathepsin K secretion and ruffled border formation in osteoclasts" 27 : 2452-2463, 2012

      10 Sasaki CY, "Phosphorylation of RelA/p65on serine 536 defines an I{kappa}B{alpha}-independent NF-{kappa}B pathway" 280 : 34538-34547, 2005

      1 Valledor AF, "Transcription factors that regulate monocyte/macrophage differentiation" 63 : 405-417, 1998

      2 Chumnarnsilpa S, "The crystal structure of the C-terminus of adseverin reveals the actin-binding interface" 106 : 13719-13724, 2009

      3 Vaananen HK, "The cell biology of osteoclast function" 113 (113): 377-381, 2000

      4 Wang D, "Suppression of SCIN inhibits human prostate cancer cell proliferation and induces G0/G1phase arrest" 44 : 161-166, 2014

      5 Ting HJ, "Supervillin associates with androgen receptor and modulates its transcriptional activity" 99 : 661-666, 2002

      6 Nurminsky D, "Regulation of chondrocyte differentiation by actin-severing protein adseverin" 302 : 427-437, 2007

      7 김정하, "Regulation of NFATc1 in Osteoclast Differentiation" 대한골대사학회 21 (21): 233-241, 2014

      8 Zhang L, "Recombinant scinderin enhances exocytosis, an effect blocked by two scinderin-derived actinbinding peptides and PIP2" 17 : 287-296, 1996

      9 Cremasco V, "Protein kinase C-delta deficiency perturbs bone homeostasis by selective uncoupling of cathepsin K secretion and ruffled border formation in osteoclasts" 27 : 2452-2463, 2012

      10 Sasaki CY, "Phosphorylation of RelA/p65on serine 536 defines an I{kappa}B{alpha}-independent NF-{kappa}B pathway" 280 : 34538-34547, 2005

      11 Iotsova V, "Osteopetrosis in mice lacking NF-kappaB1 and NF-kappaB2" 3 : 1285-1289, 1997

      12 Yasuda H, "Osteoclast differentiation factor is a ligand for osteoprotegerin/osteoclastogenesis-inhibitory factor and is identical to TRANCE/RANKL" 95 : 3597-3602, 1998

      13 Nishimura K, "Modulation of androgen receptor transactivation by gelsolin : a newly identified androgen receptor coregulator" 63 : 4888-4894, 2003

      14 Maekawa S, "Inhibition of actin regulatory activity of the 74-kDa protein from bovine adrenal medulla(adseverin)by some phospholipids" 265 : 10940-10942, 1990

      15 Takatsuna H, "Inhibition of RANKL-induced osteoclastogenesis by (− )-DHMEQ, a novel NF-kappaB inhibitor, through downregulation of NFATc1" 20 : 653-662, 2005

      16 Takayanagi H, "Induction and activation of the transcription factor NFATc1(NFAT2)integrate RANKL signaling in terminal differentiation of osteoclasts" 3 : 889-901, 2002

      17 Sakurai H, "IkappaB kinases phosphorylate NF-kappaB p65 subunit on serine 536 in the transactivation domain" 274 : 30353-30356, 1999

      18 Sampson ER, "Identification and characterization of androgen receptor associated coregulators in prostate cancer cells" 15 : 123-129, 2001

      19 Silacci P, "Gelsolin superfamily proteins : key regulators of cellular functions" 61 : 2614-2623, 2004

      20 Arora PD, "Gelsolin mediates collagen phagocytosis through a rac-dependent step" 15 : 588-599, 2004

      21 Chellaiah M, "Gelsolin deficiency blocks podosome assembly and produces increased bone mass and strength" 148 : 665-678, 2000

      22 Kwiatkowski DJ, "Functions of gelsolin: motility, signaling, apoptosis, cancer" 11 : 103-108, 1999

      23 Tchakarov L, "Expression of scinderin, an actin filament-severing protein, in different tissues" 268 : 209-212, 1990

      24 Zunino R, "Expression of scinderin in megakaryoblastic leukemia cells induces differentiation, maturation, and apoptosis with release of plateletlike particles and inhibits proliferation and tumorigenesis" 98 : 2210-2219, 2001

      25 Hayashi S, "Commitment and differentiation of stem cells to the osteoclast lineage" 76 : 911-922, 1998

      26 Rodriguez Del Castillo A, "Chromaffin cell scinderin, a novel calciumdependent actin filament-severing protein" 9 : 43-52, 1990

      27 Geng YJ, "Caspase-3-induced gelsolin fragmentation contributes to actin cytoskeletal collapse, nucleolysis, and apoptosis of vascular smooth muscle cells exposed to proinflammatory cytokines" 77 : 294-302, 1998

      28 Doyle SL, "Bruton’s tyrosine kinase is involved in p65-mediated transactivation and phosphorylation of p65 on serine 536during NFkappaB activation by lipopolysaccharide" 280 : 23496-23501, 2005

      29 Asagiri M, "Autoamplification of NFATc1 expression determines its essential role in bone homeostasis" 202 : 1261-1269, 2005

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2009-09-21 학회명변경 한글명 : 대한생화학ㆍ분자생물학회 -> 생화학분자생물학회
      영문명 : Korean Society Of Medical Biochemistry And Molecular Biology -> Korean Society Of Biochemistry And Molecular Biology
      KCI등재
      2008-01-01 평가 SCI 등재 (등재유지) KCI등재
      2006-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2004-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2001-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      1998-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 3.74 0.23 2.56
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      1.82 1.45 0.555 0.01
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