Stout D L, Becker F F
Section of Experimental Pathology, University of Texas M. D. Anderson Cancer Center, Houston 77030.
Cancer Res. 1990 Apr 15;50(8):2337-40.
Hepatic cancers from mice and rats demonstrate decreased levels of delta-aminolevulinic acid synthase, the rate-limiting enzyme in the heme synthetic pathway, and increased heme oxygenase, the heme-catabolizing enzyme. These findings suggest that diminution of P-450, b5, and catalase in these lesions may result from a heme supply that is limited by decreased heme synthesis and increased heme catabolism. Heme synthesis was measured in mouse liver tumors (MLT) and adjacent tumor-free lobes (BKG) by administering the radiolabeled heme precursors 55FeCl3 and [2-14C]glycine and subsequently extracting the heme for determination of specific activity. Despite reduced delta-aminolevulinic acid synthase activity in MLT, both tissues incorporated [2-14C]glycine into heme at similar rates. At early time points, heme extracted from MLT contained less 55Fe than that from BKG. This was attributed to the findings that MLT took up 55Fe at a slower rate than BKG and had larger iron stores than BKG. The amount of heme per milligram of protein was also similar in both tissues. These findings militate against the hypothesis that diminished hemoprotein levels in MLT result from limited availability of heme. It is probable, therefore, that decreased hemoprotein levels in hepatic tumors are linked to a general program of dedifferentiation associated with the cancer phenotype. Diminution of hemoprotein in MLT may result in a relatively increased intracellular heme pool. delta-Aminolevulinic acid synthase and heme oxygenase are, respectively, negatively and positively regulated by heme. Thus, their alteration in MLT may be due to the regulatory influences of the heme pool.
来自小鼠和大鼠的肝癌显示,δ-氨基乙酰丙酸合成酶(血红素合成途径中的限速酶)水平降低,而血红素加氧酶(血红素分解代谢酶)水平升高。这些发现表明,这些病变中细胞色素P-450、b5和过氧化氢酶的减少可能是由于血红素供应受限所致,而血红素供应受限是由血红素合成减少和血红素分解代谢增加引起的。通过给予放射性标记的血红素前体55FeCl3和[2-14C]甘氨酸,随后提取血红素以测定比活性,来测量小鼠肝肿瘤(MLT)和相邻无肿瘤叶(BKG)中的血红素合成。尽管MLT中δ-氨基乙酰丙酸合成酶活性降低,但两种组织将[2-14C]甘氨酸掺入血红素的速率相似。在早期时间点,从MLT中提取的血红素所含的55Fe比从BKG中提取的少。这归因于以下发现:MLT摄取55Fe的速率比BKG慢,且铁储存量比BKG大。每毫克蛋白质中的血红素量在两种组织中也相似。这些发现不利于这样一种假设,即MLT中血红素蛋白水平的降低是由于血红素供应有限所致。因此,肝肿瘤中血红素蛋白水平的降低可能与与癌症表型相关的一般去分化程序有关。MLT中血红素蛋白的减少可能导致细胞内血红素池相对增加。δ-氨基乙酰丙酸合成酶和血红素加氧酶分别受到血红素的负调控和正调控。因此,它们在MLT中的改变可能是由于血红素池的调节作用。