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一种草莓生长素结合蛋白基因的特性及其在昆虫细胞中的表达。

Characterization of a strawberry gene for auxin-binding protein, and its expression in insect cells.

作者信息

Lazarus C M, Macdonald H

机构信息

School of Biological Sciences, University of Bristol, UK.

出版信息

Plant Mol Biol. 1996 May;31(2):267-77. doi: 10.1007/BF00021789.

Abstract

A gene encoding an auxin-binding protein (ABP1) was isolated from strawberry by screening a genomic library with an ABP1 cDNA from maize. It resembles ABP1 genes from other sources both in structure (four introns) and in the high level of homology of the deduced amino acid sequence of the mature protein encoded in exons 2-5. Exon 1, encoding mainly the non-conserved signal peptide, was identified by a reverse transcriptase-polymerase chain reaction (RT-PCR) technique. Northern analysis indicated that ABP1 transcript levels were low during fruit development, but transcripts were detected by RT PCR at all stages of receptacle swelling (auxin-dependent) and ripening (inhibited by auxin), consistent with a role for ABP1 in auxin perception. Southern blot analysis indicated a small ABP1 gene family in octoploid cultivated strawberry, and four genes were identified by comparison of genomic and cDNA sequences. RT PCR was used to amplify the complete coding region for cloning as cDNA, and a recombinant baculovirus was constructed for the expression of strawberry ABP1 in insect cells. The coding region contains three consensus glycosylation sites, and multiple bands representing a range of glycoforms of the protein were detected on western blots of insect cell extracts. Only a single band was observed in extracts of tunicamycin-treated cells, and glycosylated protein yielded a unique N-terminal amino acid sequence, allowing determination of the signal peptide cleavage site.

摘要

通过用来自玉米的生长素结合蛋白1(ABP1)cDNA筛选基因组文库,从草莓中分离出一个编码ABP1的基因。它在结构上(四个内含子)以及外显子2至5中编码的成熟蛋白推导氨基酸序列的高度同源性方面,都与来自其他来源的ABP1基因相似。主要编码非保守信号肽的外显子1,通过逆转录酶-聚合酶链反应(RT-PCR)技术得以鉴定。Northern分析表明,在果实发育过程中ABP1转录本水平较低,但在花托膨大(生长素依赖)和成熟(受生长素抑制)的所有阶段,通过RT-PCR都能检测到转录本,这与ABP1在生长素感知中的作用一致。Southern印迹分析表明,在八倍体栽培草莓中存在一个小的ABP1基因家族,通过基因组和cDNA序列比较鉴定出四个基因。RT-PCR用于扩增完整的编码区以克隆为cDNA,并构建了重组杆状病毒用于在昆虫细胞中表达草莓ABP1。编码区包含三个共有糖基化位点,在昆虫细胞提取物的western印迹上检测到代表该蛋白一系列糖型的多条带。在衣霉素处理的细胞提取物中仅观察到一条带,糖基化蛋白产生独特的N端氨基酸序列,从而确定了信号肽切割位点。

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