Nelson C, Moffat B, Jacobsen N, Henzel W J, Stults J T, King K L, McMurtrey A, Vandlen R, Spencer S A
Genentech, Incorporated, South San Francisco, California 94080, USA.
Exp Cell Res. 1996 Nov 25;229(1):20-6. doi: 10.1006/excr.1996.0339.
Extracts from weanling pig liver were found to act synergistically with growth factors such as hepatocyte growth factor and transforming growth factor-alpha to stimulate hepatocyte growth in serum-free cultures. In the absence of added growth factors, the extracts had no activity. The compound responsible for this activity was isolated by passing heat-treated liver extract through anion-exchange and heparin columns followed by gel filtration at neutral and low pH, reversed-phase HPLC, and a final gel filtration column at low pH. The activity was followed throughout the purification by its ability to increase substantially the incorporation of [3H]thymidine into primary rat hepatocytes cultured serum-free in the presence of hepatocyte growth factor. The active compound was identified by NMR and mass spectrometry as glycerophosphorylethanolamine (GPEA), a breakdown product of the phospholipid phosphatidylethanolamine. The ethanolamine portion of the molecule was critical for the observed activity, whereas the glycerol phosphate portion was not necessary. In the absence of added growth factors, neither GPEA nor ethanolamine had any stimulatory effect on the cells. These results demonstrate that hepatocytes grown in culture, and especially those grown in serum-free media, require a supplement of ethanolamine and/or GPEA. In the absence of these compounds, their response to growth stimuli is greatly reduced.
研究发现,断奶仔猪肝脏提取物可与肝细胞生长因子和转化生长因子-α等生长因子协同作用,在无血清培养中刺激肝细胞生长。在不添加生长因子的情况下,提取物无活性。通过将热处理后的肝脏提取物先后通过阴离子交换柱和肝素柱,然后在中性和低pH值下进行凝胶过滤、反相高效液相色谱,最后在低pH值下进行凝胶过滤柱分离,得到了具有这种活性的化合物。在整个纯化过程中,通过其在肝细胞生长因子存在下显著增加[3H]胸腺嘧啶核苷掺入原代大鼠无血清培养肝细胞的能力来跟踪活性。通过核磁共振和质谱鉴定,活性化合物为甘油磷酸乙醇胺(GPEA),它是磷脂酰乙醇胺的分解产物。分子中的乙醇胺部分对观察到的活性至关重要,而甘油磷酸部分则不是必需的。在不添加生长因子的情况下,GPEA和乙醇胺对细胞均无刺激作用。这些结果表明,培养的肝细胞,尤其是无血清培养基中培养的肝细胞,需要补充乙醇胺和/或GPEA。在没有这些化合物的情况下,它们对生长刺激的反应会大大降低。