Gohda E, Yamasaki T, Tsubouchi H, Kurobe M, Sakiyama O, Aoki H, Niidani N, Shin S, Hayashi K, Hashimoto S
Department of Immunochemistry, Faculty of Pharmaceutical Sciences, Okayama University, Japan.
Biochim Biophys Acta. 1990 Jun 12;1053(1):21-6. doi: 10.1016/0167-4889(90)90020-e.
We have recently purified human hepatocyte growth factor (hHGF), a heterodimer with molecular weight of about 83,000, from plasma of patients with fulminant hepatic failure (Gohda, E. et al., J. Clin. Invest. 81, 414-419, 1988). Biological and immunological properties of hHGF were examined. Out of the well-known growth factors tested, only epidermal growth factor (EGF) and transforming growth factor-alpha (TGF-alpha) stimulated DNA synthesis of adult rat hepatocytes in primary culture. hHGF enhanced the DNA synthesis at less than one-tenth of the molar concentrations of EGF and TGF-alpha. Half-maximal stimulations by hHGF, EGF and TGF-alpha were observed at 30, 400 and 900 pM, respectively. Maximal stimulation by TGF-alpha, however, was greater than those caused by hHGF and EGF. The effect of hHGF was additive with the maximal effects of EGF and TGF-alpha. Anti-hHGF antiserum was prepared in a rabbit by injecting with purified hHGF. This antiserum recognized nonreduced hHGF, but not reduced hHGF. The antiserum for hHGF did not inhibit growth-promoting activity of EGF, that was neutralized by incubation with anti-EGF antiserum. The activity of hHGF was completely inhibited by anti-hHGF antiserum, but not by anti-EGF antiserum. hHGF did not show any cross-reactivity to anti-EGF antiserum as measured by enzyme immunoassay for EGF. Thus, biological and immunological properties of hHGF are different from those of EGF and TGF-alpha.
我们最近从暴发性肝衰竭患者的血浆中纯化出了人肝细胞生长因子(hHGF),它是一种分子量约为83,000的异二聚体(Gohda, E.等人,《临床研究杂志》81, 414 - 419, 1988)。对hHGF的生物学和免疫学特性进行了检测。在测试的众多知名生长因子中,只有表皮生长因子(EGF)和转化生长因子-α(TGF-α)能刺激原代培养的成年大鼠肝细胞的DNA合成。hHGF在摩尔浓度低于EGF和TGF-α十分之一时就能增强DNA合成。hHGF、EGF和TGF-α的半最大刺激浓度分别为30、400和900 pM。然而,TGF-α的最大刺激作用大于hHGF和EGF所引起的作用。hHGF的作用与EGF和TGF-α的最大作用具有加和性。通过向兔注射纯化的hHGF制备了抗hHGF抗血清。这种抗血清能识别未还原的hHGF,但不能识别还原后的hHGF。hHGF抗血清不抑制EGF的促生长活性,EGF的促生长活性可通过与抗EGF抗血清孵育而被中和。hHGF的活性被抗hHGF抗血清完全抑制,但不被抗EGF抗血清抑制。通过针对EGF的酶免疫测定法检测,hHGF与抗EGF抗血清没有任何交叉反应。因此,hHGF的生物学和免疫学特性与EGF和TGF-α不同。