生物学杂志
生物學雜誌
생물학잡지
Journal of Biology
2015年
5期
11-14
,共4页
NCAM%EMT%细胞运动%信号通路
NCAM%EMT%細胞運動%信號通路
NCAM%EMT%세포운동%신호통로
NCAM%EMT%cell motility%signal pathway
神经细胞黏附分子( Neural cell adhesion molecule, NCAM)是一种定位在细胞膜上的糖蛋白,它能介导细胞与细胞及细胞与细胞外基质间相互作用,影响细胞黏附、迁移以及增殖等。首先,对比研究NCAM在正常乳腺细胞和恶性乳腺肿瘤细胞中的表达情况,发现恶性肿瘤细胞NCAM表达水平明显高于正常细胞;当正常乳腺细胞发生上皮间质转化(Epithelial-mesenchymal transition, EMT)后,NCAM表达水平上调;正常乳腺细胞稳定转染NCAM-140后,E-cadherin表达水平下调,N-cadherin表达水平上调,细胞运动能力明显增强,且激活EGFR和STAT3信号通路。说明了NCAM能够促进细胞发生EMT过程,揭示NCAM在乳腺肿瘤发生发展中起到的重要作用。
神經細胞黏附分子( Neural cell adhesion molecule, NCAM)是一種定位在細胞膜上的糖蛋白,它能介導細胞與細胞及細胞與細胞外基質間相互作用,影響細胞黏附、遷移以及增殖等。首先,對比研究NCAM在正常乳腺細胞和噁性乳腺腫瘤細胞中的錶達情況,髮現噁性腫瘤細胞NCAM錶達水平明顯高于正常細胞;噹正常乳腺細胞髮生上皮間質轉化(Epithelial-mesenchymal transition, EMT)後,NCAM錶達水平上調;正常乳腺細胞穩定轉染NCAM-140後,E-cadherin錶達水平下調,N-cadherin錶達水平上調,細胞運動能力明顯增彊,且激活EGFR和STAT3信號通路。說明瞭NCAM能夠促進細胞髮生EMT過程,揭示NCAM在乳腺腫瘤髮生髮展中起到的重要作用。
신경세포점부분자( Neural cell adhesion molecule, NCAM)시일충정위재세포막상적당단백,타능개도세포여세포급세포여세포외기질간상호작용,영향세포점부、천이이급증식등。수선,대비연구NCAM재정상유선세포화악성유선종류세포중적표체정황,발현악성종류세포NCAM표체수평명현고우정상세포;당정상유선세포발생상피간질전화(Epithelial-mesenchymal transition, EMT)후,NCAM표체수평상조;정상유선세포은정전염NCAM-140후,E-cadherin표체수평하조,N-cadherin표체수평상조,세포운동능력명현증강,차격활EGFR화STAT3신호통로。설명료NCAM능구촉진세포발생EMT과정,게시NCAM재유선종류발생발전중기도적중요작용。
Neural cell adhesion molecule(NCAM), a kind of glycoproteins expressing on the cell surface, engages in both cell-cell and cell-extracellular matrix interactions.It also influences cell adhesion, migration and proliferation.First, NCAM expression was compared in normal breast cells and malignant breast tumor cells.It was detected that the expression level of NCAM-140 in malignant breast cancer cells was higher than normal breast cells.When normal breast cells underwent epithelial to mesenchymal transition ( EMT) ,NCAM expression was upregulated.The expression level of E-cadherin in normal breast cells after stable transfection with NCAM-140 was decreased, N-cadherin was increased, cell motility was enhanced, and EGFR and STAT3 signal pathways were acti-vated.This study demonstrated that NCAM could promote EMT process, and provided a significant basis that NCAM played an impor-tant role in occurrence and development of breast cancer.