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赤霉素刺激下大麦糊粉层细胞中高pIα-淀粉酶多基因家族主要转录本的协同增加。

Coordinate increase in major transcripts from the high pI alpha-amylase multigene family in barley aleurone cells stimulated with gibberellic acid.

作者信息

Rogers J C, Milliman C

出版信息

J Biol Chem. 1984 Oct 10;259(19):12234-40.

PMID:6090459
Abstract

The purpose of this study was to identify specifically genes and transcripts for the high pI isozyme of barley alpha-amylase. From hybridization of coding sequence probes to blots of genomic DNA digested with restriction enzymes that do not cut within our cloned high pI alpha-amylase cDNA, it is estimated that about 7 alpha-amylase genes or pseudogenes exist. No difference could be detected between barley aleurone cell and sprout DNAs. Experiments using probes from the 5' and 3' untranslated sequences of the high pI alpha-amylase cDNA clone identified three HindIII fragments that probably carry high pI sequences. Primer extension experiments used as a primer the terminal 5' coding sequence from our cDNA clone; this primer would not cross-hybridize to low pI alpha-amylase transcripts. Two major transcripts were identified. These shared a conserved 23-base sequence immediately 5' to the ATG start codon, although a C----G transversion and a 3-base deletion were present within this sequence. An unusual 8-base pair GC palindrome was present in the conserved region immediately preceding the ATG start codon. Distal to the conserved sequence there was no apparent homology. One transcript carrying a 97-base untranslated region was identical to our high pI cDNA clone E. The gene for the other was recovered from a lambda phage genomic library. The 5' coding sequence was very similar, but not identical to clone E, demonstrating that these transcripts arise from separate genes. The two transcripts increased coordinately in aleurone cells stimulated with gibberellic acid. These data indicate that there is a high pI alpha-amylase multigene family with at least two active members, both of which are regulated in some manner by the plant hormone gibberellic acid.

摘要

本研究的目的是明确鉴定大麦α-淀粉酶高pI同工酶的特定基因和转录本。通过将编码序列探针与用在我们克隆的高pIα-淀粉酶cDNA内不切割的限制性酶消化的基因组DNA印迹进行杂交,估计存在约7个α-淀粉酶基因或假基因。在大麦糊粉层细胞和发芽DNA之间未检测到差异。使用来自高pIα-淀粉酶cDNA克隆的5'和3'非翻译序列的探针进行的实验鉴定出了三个可能携带高pI序列的HindIII片段。引物延伸实验使用我们cDNA克隆的末端5'编码序列作为引物;该引物不会与低pIα-淀粉酶转录本交叉杂交。鉴定出了两个主要转录本。它们在紧邻ATG起始密码子的5'端共享一个保守的23碱基序列,尽管该序列内存在一个C→G颠换和一个3碱基缺失。在紧邻ATG起始密码子的保守区域存在一个不寻常的8碱基对GC回文序列。在保守序列远端没有明显的同源性。一个携带97碱基非翻译区的转录本与我们的高pI cDNA克隆E相同。另一个的基因从λ噬菌体基因组文库中获得。其5'编码序列与克隆E非常相似,但不完全相同,表明这些转录本来自不同的基因。这两个转录本在赤霉素刺激的糊粉层细胞中协同增加。这些数据表明存在一个高pIα-淀粉酶多基因家族,其中至少有两个活性成员,两者均以某种方式受植物激素赤霉素调控。

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