细胞生长
细胞生物学
表皮生长因子
生长因子
细胞内
接触抑制
生物
内生
细胞培养
转染
细胞外
细胞
细胞信号
端粒酶
信号转导
化学
生物化学
受体
遗传学
基因
作者
Gary S. Goldberg,John F. Bechberger,Youichi Tajima,Mary Merritt,Yasufumi Omori,Mary Ann Gawinowicz,Ramaswamy Narayanan,Yi Tan,Yutaka Sanai,Hiroshi Yamasaki,Christian C. Naus,Hiroyuki Tsuda,Bruce J. Nicholson
出处
期刊:PubMed
[National Institutes of Health]
日期:2000-11-01
卷期号:60 (21): 6018-26
被引量:76
摘要
Gap junction expression has been reported to control the growth of a variety of transformed cells. We undertook parallel analysis of connexins Cx32 and Cx43 in glioma cells, which revealed potential mechanisms underlying this phenomenon and led to several novel findings. Cx43, but not Cx32, suppressed C6 glioma cell growth. Paradoxically, Cx32 transfection resulted in severalfold more dye transfer than Cx43. However, Cx43 transfectants shared endogenous metabolites more efficiently than Cx32 transfectants. Interestingly, a significant portion of Cx43 permeants were incorporated into macromolecules more readily than those that transferred via Cx32. Cx43 induced contact inhibition of cell growth but in contrast to other reports, did not affect log phase growth rates. Cell death, senescence, or suppression of growth factor signaling was not involved because no significant alterations were seen in cell viability, telomerase, or mitogen-activated protein kinase activity. However, suppression of cell growth by Cx43 entailed the secretion of growth-regulatory factors. Most notably, a major component of conditioned medium that was affected by Cx43 was found to be MFG-E8 (milk fat globule epidermal growth factor 8), which is involved in cell anchorage and integrin signaling. These results indicate that Cx43 regulates cell growth by the modulation of extracellular growth factors including MFG-E8. Furthermore, the ability of a Cx to regulate cell growth may rely on its ability to mediate the intercellular transfer of endogenous metabolites but not artificial dyes.
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