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马铃薯葡聚糖磷酸化酶的第二种L型同工酶:克隆、反义抑制及表达分析。

A second L-type isozyme of potato glucan phosphorylase: cloning, antisense inhibition and expression analysis.

作者信息

Sonnewald U, Basner A, Greve B, Steup M

机构信息

Institut für Pflanzengenetik und Kulturpflanzenforschung, Gatersleben, Germany.

出版信息

Plant Mol Biol. 1995 Feb;27(3):567-76. doi: 10.1007/BF00019322.

Abstract

In potato tubers two starch phosphorylase isozymes, types L and H, have been described and are believed to be responsible for the complete starch breakdown in this tissue. Type L has been localized in amyloplasts, whereas type H is located within the cytosol. In order to investigate whether the same isozymes are also present in potato leaf tissue a cDNA expression library from potato leaves was screened using a monoclonal antibody recognizing both isozyme forms. Besides the already described tuber L-type isozyme a cDNA clone encoding a second L-type isozyme was isolated. The 3171 nucleotide long cDNA clone contains an uninterrupted open reading frame of 2922 nucleotides which encodes a polypeptide of 974 amino acids. Sequence comparison between both L-type isozymes on the amino acid level showed that the polypeptides are highly homologous to each other, reaching 81-84% identity over most parts of the polypeptide. However the regions containing the transit peptide (amino acids 1-81) and the insertion sequence (amino acids 463-570) are highly diverse, reaching identities of only 22.0% and 29.0% respectively. Northern analysis revealed that both forms are differentially expressed. The steady-state mRNA levels of the tuber L-type isozyme accumulates strongly in potato tubers and only weakly in leaf tissues, whereas the mRNA of the leaf L-type isozyme accumulates in both tissues to the same extent. Constitutive expression of an antisense RNA specific for the leaf L-type gene resulted in a strong reduction of starch phosphorylase L-type activity in leaf tissue, but had only sparse effects in potato tuber tissues. Determination of the leaf starch content revealed that antisense repression of the starch phosphorylase activity has no significant influence on starch accumulation in leaves of transgenic potato plants. This result indicated that different L-type genes are responsible for the starch phosphorylase activity in different tissues, but the function of the different enzymes remains unclear.

摘要

在马铃薯块茎中,已发现两种淀粉磷酸化酶同工酶,即L型和H型,它们被认为负责该组织中淀粉的完全分解。L型定位于造粉体中,而H型位于细胞质中。为了研究马铃薯叶片组织中是否也存在相同的同工酶,使用一种能识别两种同工酶形式的单克隆抗体筛选了来自马铃薯叶片的cDNA表达文库。除了已描述的块茎L型同工酶外,还分离出了一个编码第二种L型同工酶的cDNA克隆。这个3171个核苷酸长的cDNA克隆包含一个2922个核苷酸的不间断开放阅读框,编码一个974个氨基酸的多肽。两种L型同工酶在氨基酸水平上的序列比较表明,这些多肽彼此高度同源,在多肽的大部分区域同一性达到81-84%。然而,包含转运肽(第1-81位氨基酸)和插入序列(第463-570位氨基酸)的区域差异很大,同一性分别仅为22.0%和29.0%。Northern分析表明,两种形式的表达存在差异。块茎L型同工酶的稳态mRNA水平在马铃薯块茎中强烈积累,而在叶片组织中积累较弱,而叶片L型同工酶的mRNA在两种组织中的积累程度相同。对叶片L型基因特异的反义RNA的组成型表达导致叶片组织中淀粉磷酸化酶L型活性大幅降低,但对马铃薯块茎组织的影响很小。叶片淀粉含量的测定表明,淀粉磷酸化酶活性的反义抑制对转基因马铃薯植株叶片中的淀粉积累没有显著影响。这一结果表明,不同的L型基因负责不同组织中的淀粉磷酸化酶活性,但不同酶的功能仍不清楚。

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