Esaka M, Yamada N, Kitabayashi M, Setoguchi Y, Tsugeki R, Kondo M, Nishimura M
Faculty of Applied Biological Science, Hiroshima University, Kagamiyama, Japan.
Plant Mol Biol. 1997 Jan;33(1):141-55. doi: 10.1023/a:1005742916292.
Three cDNA clones (cat1, cat2, cat3) for catalase (EC 1.11.1.6) were isolated from a cDNA library of pumpkin (Cucurbita sp.) cotyledons. In northern blotting using the cDNA-specific probe, the cat1 mRNA levels were high in seeds and early seedlings of pumpkin. The expression pattern of cat1 was similar to that of malate synthase, a characteristic enzyme of glyoxysomes. These data suggest that cat1 might encode a catalase associated with glyoxysomal functions. Furthermore, immunocytochemical analysis using cat1-specific anti-peptide antibody directly showed that cat1 encoding catalase is located in glyoxysomes. The cat2 mRNA was present at high levels in green cotyledons, mature leaf, stem and green hypocotyl of light-grown pumpkin plant, and correlated with chlorophyll content in the tissues. The tissue-specific expression of cat2 had a strong resemblance to that of glycolate oxidase, a characteristic enzyme of leaf peroxisomes. During germination of pumpkin seeds, cat2 mRNA levels increased in response to light, although the increase in cat2 mRNA by light was less than that of glycolate oxidase. cat3 mRNA was abundant in green cotyledons, etiolated cotyledons, green hypocotyl and root, but not in young leaf. cat3 mRNA expression was not dependent on light, but was constitutive in mature tissues. Interestingly, cat1 mRNA levels increased during senescence of pumpkin cotyledons, whereas cat2 and cat3 mRNAs disappeared during senescence, suggesting that cat1 encoding catalase may be involved in the senescence process. Thus, in pumpkin, three catalase genes are differentially regulated and may exhibit different functions.
从南瓜(南瓜属)子叶的cDNA文库中分离出三个过氧化氢酶(EC 1.11.1.6)的cDNA克隆(cat1、cat2、cat3)。在使用cDNA特异性探针的Northern印迹分析中,cat1 mRNA水平在南瓜种子和早期幼苗中较高。cat1的表达模式与苹果酸合酶相似,苹果酸合酶是乙醛酸循环体的一种特征酶。这些数据表明,cat1可能编码一种与乙醛酸循环体功能相关的过氧化氢酶。此外,使用cat1特异性抗肽抗体的免疫细胞化学分析直接表明,编码过氧化氢酶的cat1位于乙醛酸循环体中。cat2 mRNA在光照培养的南瓜植株的绿色子叶、成熟叶片、茎和绿色下胚轴中高水平存在,并与组织中的叶绿素含量相关。cat2的组织特异性表达与乙醇酸氧化酶(叶过氧化物酶体的一种特征酶)的表达非常相似。在南瓜种子萌发过程中,cat2 mRNA水平响应光照而增加,尽管光照引起的cat2 mRNA增加量小于乙醇酸氧化酶。cat3 mRNA在绿色子叶、黄化子叶、绿色下胚轴和根中丰富,但在幼叶中不丰富。cat3 mRNA的表达不依赖于光照,而是在成熟组织中组成性表达。有趣的是,在南瓜子叶衰老过程中,cat1 mRNA水平增加,而cat2和cat3 mRNA在衰老过程中消失,这表明编码过氧化氢酶的cat1可能参与衰老过程。因此,在南瓜中,三个过氧化氢酶基因受到不同的调控,可能表现出不同的功能。