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两个大麦α-淀粉酶基因家族在糊粉层细胞中的调控方式不同。

Two barley alpha-amylase gene families are regulated differently in aleurone cells.

作者信息

Rogers J C

出版信息

J Biol Chem. 1985 Mar 25;260(6):3731-8.

PMID:3871776
Abstract

Isolation of a full- or nearly full-length cDNA clone for the type B isozyme of barley alpha-amylase is described. The coding region has a high GC content and an unusual codon bias similar to that described for the type A isozyme cDNA previously characterized by our laboratory. The theoretical secondary structure for the 5' end of this type B mRNA, as well as that for the two previously identified type A transcripts, is unusual in that the AUG initiation codon is enclosed in each instance by a very stable hairpin loop. Results of primer extension experiments utilizing probes for the 5' coding regions of both types of mRNA are consistent with some of the features of these predicted structures. Primer extension experiments utilizing a probe specific for the type B 5' coding region identified only one type of extension products, and these had 5' untranslated region sequences identical to that of the type B cDNA. Thus there appears to be only one major type of type B gene transcribed. Hybridization experiments utilizing 5' probes specific for type A and for the type B mRNA demonstrate different effects of the hormone, gibberellic acid. The type A mRNAs are present in relatively large amounts in unstimulated aleurone cells and increase about 20-fold after stimulation with gibberellic acid. In contrast, the type B mRNA is present at very low levels in unstimulated cells, but increases at least 100-fold after cells are exposed to the hormone.

摘要

本文描述了大麦α-淀粉酶B型同工酶全长或近乎全长cDNA克隆的分离。编码区具有较高的GC含量和与我们实验室先前鉴定的A型同工酶cDNA类似的不寻常密码子偏好。这种B型mRNA 5'端的理论二级结构,以及之前鉴定的两种A型转录本的二级结构,其不同寻常之处在于AUG起始密码子在每种情况下都被一个非常稳定的发夹环包围。利用两种mRNA 5'编码区探针进行引物延伸实验的结果与这些预测结构的一些特征一致。利用针对B型5'编码区的特异性探针进行引物延伸实验,仅鉴定出一种延伸产物,且这些产物的5'非翻译区序列与B型cDNA相同。因此,似乎只有一种主要类型的B型基因被转录。利用针对A型和B型mRNA的5'特异性探针进行杂交实验,显示了激素赤霉素的不同作用。A型mRNA在未受刺激的糊粉层细胞中含量相对较高,在用赤霉素刺激后增加约20倍。相比之下,B型mRNA在未受刺激的细胞中含量极低,但在细胞暴露于该激素后至少增加100倍。

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