Shibahara S, Yoshida T, Kikuchi G
J Biochem. 1980 Jul;88(1):45-50.
In the pig spleen the specific activity of heme oxygenase was two to three times higher in smooth microsomes than in rough microsomes, whereas the total heme oxygenase activities recovered in the two microsomal fractions were similar. Free and bound polysomes were isolated from pig spleen and nascent peptides on these polysomes were analyzed by employing [3H]puromycin and a heme oxygenase-specific rabbit antibody (IgG). It was shown that free polysomes are the major site of heme oxygenase synthesis. In addition, cell-free synthesis of heme oxygenase was performed in a reticulocyte lysate system with free and bound polysomes isolated from pig spleen, and the results obtained again indicated that heme oxygenase is synthesized predominantly on free polysomes. The heme oxygenase newly synthesized on free polysomes may be incorporated first into the rough portion of endoplasmic reticulum either before or after its release from polysomes, although the specific activity of this enzyme at the steady state is considerably higher in the smooth region.
在猪脾脏中,血红素加氧酶的比活性在光滑微粒体中比在粗糙微粒体中高两到三倍,而在这两种微粒体组分中回收的血红素加氧酶总活性相似。从猪脾脏中分离出游离和结合多核糖体,并使用[3H]嘌呤霉素和血红素加氧酶特异性兔抗体(IgG)分析这些多核糖体上的新生肽。结果表明,游离多核糖体是血红素加氧酶合成的主要部位。此外,在网织红细胞裂解液系统中,用从猪脾脏中分离出的游离和结合多核糖体进行血红素加氧酶的无细胞合成,再次获得的结果表明血红素加氧酶主要在游离多核糖体上合成。在游离多核糖体上新合成的血红素加氧酶可能在从多核糖体释放之前或之后首先并入内质网的粗糙部分,尽管该酶在稳态时在光滑区域的比活性要高得多。