TISSUE PROTEIN-TURNOVER DURING LIVER CARCINOGENESIS

被引:23
作者
CANUTO, RA [1 ]
TESSITORE, L [1 ]
MUZIO, G [1 ]
AUTELLI, R [1 ]
BACCINO, FM [1 ]
机构
[1] CNR,CTR IMMUNOGENET & EXPTL ONCOL,TURIN,ITALY
关键词
D O I
10.1093/carcin/14.12.2581
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Overall rates of tissue protein degradation in vivo during chemical hepatocarcinogenesis were estimated by a double-isotope method as well as from the accumulation of peptide intermediates in protein degradation induced by bestatin. Several parameters estimating rates of cell proliferation and cell loss have been measured in parallel. The two procedures adopted consistently indicated that protein turnover was significantly slowed down through the whole observation period (12 months after the initiating administration of DENA) in both 'preneoplastic' nodules and hepatomas as compared with control livers or perinodular tissue. Such a difference may confer a selective growth advantage to 'preneoplastic' and tumoral cells. Since protein degradation rates did not appreciably differ between nodules and hepatomas, either such advantage originated from some early step in the carcinogenetic process or it merely reflected the proliferative events in the two cell populations. Yet neither liver nodules nor hepatomas were characterized by very high rates of cell proliferation, however much increased with respect to control liver.
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页码:2581 / 2587
页数:7
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共 71 条
[1]  
Hershko A., Mamont P., Shields R., Tomkins G.M., Pleiotypic response, Nature, 232, pp. 206-211, (1971)
[2]  
Ahlberg J., Yucel T., Ericksson L., Glaumann H., Characterization of the proteolytic compartment in rat bepetocyte nodules, Virchows Arch. B Cell Pathol, 53, pp. 79-88, (1987)
[3]  
Rotstein J., Sarma D.S.R., Farber E., Sequential alterations in growth control and cell dynamics of rat hepatocytes in early piecancerous steps in hepatocarcinogenesis, Cancer Res., 46, pp. 2377-2385, (1986)
[4]  
Roomi M.W., Ho R.K., Sarma D.S.R., Farber E., A common biochemical pattern in preneoplastic hepatocyte nodules generated in four different models in the rat, Cancer Res., 45, pp. 564-571, (1985)
[5]  
Canuto R.A., Muzio G., Biocca M.E., Dianzani M.U., Lipid peroxidation in rat AH-130 hepatoma cells enriched in vitro with arachidonic acid, Cancer Res., 51, pp. 4603-4608, (1991)
[6]  
Rutenburg A.M., Kim H., Fischbein J.W., Hanker J.S., Wasserkrug H.L., Seligman A.M., Histochemical and ultrastructural demonstration of y-ghitamyl transpeptidase activity, J. Histochem. Cytochem., 17, pp. 517-526, (1969)
[7]  
Dalbeare F., Gratzner H., Pallavicini M.G., Gray J.W., Flow cytometric measurement of total DNA content and incorporated brotnodeoxy-uridine, Proc. Natl Acad. Sd. USA, 80, pp. 5573-5577, (1983)
[8]  
Jsnne J., Williams-Ashman H.G., Biochem. Biophys. Res. Common., 42, pp. 222-229, (1971)
[9]  
Arias J.M., Doyle D., Schimke R.T., Studies on the synthesis and degradation of proteins of the endoplasmic reticulum of rat liver, J. Biol. Chem., 244, pp. 3303-3315, (1969)
[10]  
Chandar N., Amenta J.S., Kandala J.C., Lombardi B., Liver cell turnover in rats fed a choline-devoid diet, Carcinogenesis, 8, pp. 669-673, (1987)