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首页> 外文期刊>Plant Science >SUGAR LEVELS REGULATE THE EXPRESSION OF RIBOSOMAL PROTEIN GENES ENCODING PROTEIN S28 AND UBIQUITIN-FUSED PROTEIN S27A IN MAIZE PRIMARY ROOT TIPS
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SUGAR LEVELS REGULATE THE EXPRESSION OF RIBOSOMAL PROTEIN GENES ENCODING PROTEIN S28 AND UBIQUITIN-FUSED PROTEIN S27A IN MAIZE PRIMARY ROOT TIPS

机译:糖水平调节玉米蛋白根系抗原中核糖体蛋白基因编码蛋白S28和泛素融合蛋白S27A的表达

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摘要

In order to isolate glucose-starvation-repressed cDNAs in maize (Zea mays :L.) root tips, a cDNA library was constructed with poly(A)(+) mRNA from excised root tips of 3-day old maize seedlings. After differential screening of the library, we isolated two cDNAs named star1 and star2, which were identified by comparison with sequence data bases. star1 corresponds to a new member of the ubiquitin fusion gene family in maize coding for a monomer of ubiquitin in frame with ribosomal protein S27a (Ubi-S27a). star2 encodes the maize homologue of ribosomal protein S28. In maize root tips submitted to carbohydrate deprivation, the Ubi-S27a and S28 mRNA levels decrease very rapidly and become undetectable after 24 h of starvation. The effects of starvation on the Ubi-S27a and S28 mRNA expression can be reversed by re-feeding the root tips with glucose, The Ubi-S27a and S28 mRNA expression is most prevalent when root tips are incubated in the presence of high glucose concentrations and metabolizable sugars such as fructose and sucrose, but not in the presence of non-metabolizable sugars such as mannitol and L-glucose. Transcript levels of maize Ubi-S27a and S28 are preferentially abundant in dividing tissues of maize seedlings. In root tips incubated with cell division inhibitors, the decrease of Ubi-S27a and S28 mRNA steady-state levels parallels that of histone H4 mRNA, that was used as a marker of cell division. These results indicate that the regulation of the expression of the two ribosomal protein genes that we monitored, may be controlled by sugar levels in a nutrient supply- and growth rate-dependent manner. [References: 41]
机译:为了在玉米(Zea mays:L。)根尖中分离出葡萄糖饥饿抑制的cDNA,从3天龄玉米幼苗的根尖上切除了一个带有poly(A)(+)mRNA的cDNA文库。在对文库进行差异筛选后,我们分离了两个名为star1和star2的cDNA,通过与序列数据库进行比较来鉴定它们。 star1对应于玉米中遍在蛋白融合基因家族的新成员,编码带有核糖体蛋白S27a(Ubi-S27a)的遍在蛋白单体。 star2编码玉米核糖体蛋白S28的同源物。在遭受碳水化合物剥夺的玉米根尖中,Ubi-S27a和S28 mRNA水平非常迅速地下降,在饥饿24小时后变得无法检测到。可以通过重新给葡萄糖根尖逆转饥饿对Ubi-S27a和S28 mRNA表达的影响。当在高葡萄糖浓度和高葡萄糖浓度下孵育根尖时,Ubi-S27a和S28 mRNA表达最普遍。可代谢糖,例如果糖和蔗糖,但不存在不可代谢糖,例如甘露醇和L-葡萄糖。玉米Ubi-S27a和S28的转录本水平优先分布在玉米幼苗的组织中。在用细胞分裂抑制剂孵育的根尖中,Ubi-S27a和S28 mRNA稳态水平的降低与组蛋白H4 mRNA的水平平行,后者被用作细胞分裂的标志物。这些结果表明,我们监测的两个核糖体蛋白基因表达的调节可能受糖水平的控制,以营养供应和生长速率依赖性。 [参考:41]

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