Biogenesis of podosome rosettes through fission
碩士 === 國立中興大學 === 生命科學系所 === 105 === Podosomes are dynamic actin-based membrane protrusions that are important for extracellular matrix degradation and invasive cell motility. Individual podosomes are often found to organize into large rosette-like structures in some types of cells, such as osteocla...
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ndltd-TW-105NCHU51050022017-09-15T04:40:21Z http://ndltd.ncl.edu.tw/handle/28511560800603906293 Biogenesis of podosome rosettes through fission Podosome rosette可藉由分裂生成 Suz-Lin Kao 郭偲琳 碩士 國立中興大學 生命科學系所 105 Podosomes are dynamic actin-based membrane protrusions that are important for extracellular matrix degradation and invasive cell motility. Individual podosomes are often found to organize into large rosette-like structures in some types of cells, such as osteoclasts, endothelial cells, Src-transformed fibroblasts, and certain highly invasive cancer cells. In this study, we show that new podosome rosettes arise by one of two mechanisms; de novo assembly or fission of a pre-existing podosome rosette in Src-transformed fibroblasts. Fission is a more efficient way than de novo assembly to generate new podosome rosettes in these cells. Podosome rosettes undergoing fission possess higher motility and stronger matrix-degrading capability. Podosome rosette fission may be the result of polarized myosin II-mediated contractility of these structures. Moreover, we found that the fission of podosome rosettes is inhibited by suppression of myosin light chain kinase (MLCK), but increased by suppression of Rho-associated kinase II (ROCK II). Take together, this study unveils a previously unknown mechanism—fission for the biogenesis of podosome rosettes and suggests a positive role for MLCK and a negative role for ROCK II in this process. Hong-Chen Chen 陳鴻震 2016 學位論文 ; thesis 61 zh-TW |
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碩士 === 國立中興大學 === 生命科學系所 === 105 === Podosomes are dynamic actin-based membrane protrusions that are important for extracellular matrix degradation and invasive cell motility. Individual podosomes are often found to organize into large rosette-like structures in some types of cells, such as osteoclasts, endothelial cells, Src-transformed fibroblasts, and certain highly invasive cancer cells. In this study, we show that new podosome rosettes arise by one of two mechanisms; de novo assembly or fission of a pre-existing podosome rosette in Src-transformed fibroblasts. Fission is a more efficient way than de novo assembly to generate new podosome rosettes in these cells. Podosome rosettes undergoing fission possess higher motility and stronger matrix-degrading capability. Podosome rosette fission may be the result of polarized myosin II-mediated contractility of these structures. Moreover, we found that the fission of podosome rosettes is inhibited by suppression of myosin light chain kinase (MLCK), but increased by suppression of Rho-associated kinase II (ROCK II). Take together, this study unveils a previously unknown mechanism—fission for the biogenesis of podosome rosettes and suggests a positive role for MLCK and a negative role for ROCK II in this process.
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author2 |
Hong-Chen Chen |
author_facet |
Hong-Chen Chen Suz-Lin Kao 郭偲琳 |
author |
Suz-Lin Kao 郭偲琳 |
spellingShingle |
Suz-Lin Kao 郭偲琳 Biogenesis of podosome rosettes through fission |
author_sort |
Suz-Lin Kao |
title |
Biogenesis of podosome rosettes through fission |
title_short |
Biogenesis of podosome rosettes through fission |
title_full |
Biogenesis of podosome rosettes through fission |
title_fullStr |
Biogenesis of podosome rosettes through fission |
title_full_unstemmed |
Biogenesis of podosome rosettes through fission |
title_sort |
biogenesis of podosome rosettes through fission |
publishDate |
2016 |
url |
http://ndltd.ncl.edu.tw/handle/28511560800603906293 |
work_keys_str_mv |
AT suzlinkao biogenesisofpodosomerosettesthroughfission AT guōcāilín biogenesisofpodosomerosettesthroughfission AT suzlinkao podosomerosettekějíyóufēnlièshēngchéng AT guōcāilín podosomerosettekějíyóufēnlièshēngchéng |
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1718533877244362752 |