首页> 外文期刊>The Journal of Allergy and Clinical Immunology >Isolation and molecular characterization of the first genomic clone of a major peanut allergen, Ara h 2.
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Isolation and molecular characterization of the first genomic clone of a major peanut allergen, Ara h 2.

机译:主要花生过敏原Ara h 2的第一个基因组克隆的分离和分子鉴定。

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BACKGROUND: Peanuts have been identified as potent food allergens responsible for life-threatening IgE reactions among hypersensitive individuals. With the current increase of peanut allergies, there is an urgent need to molecularly characterize the genes encoding the target proteins and to understand the nature of their regulation. OBJECTIVES: The objectives of this study were to isolate, sequence, and characterize at least one full-length genomic clone encoding the major peanut allergen Ara h 2. METHODS: A peanut genomic library, constructed in a Lambda Fix II vector, was screened with an 80-bp oligonucleotide probe constructed on the basis of the 5' end of a published Ara h 2 cDNA partial sequence. One putative positive lambda clone was isolated, digested with Bam HI to release its 16-kb insert, and confirmed by means of dot blot and Southern hybridization. The positive clone was subcloned in pBluescript SK+ vector, sequenced, and characterized. RESULTS: Sequence analysis revealed a full-length genomic clone with an open reading frame starting with an initiation codon (ATG) at position 1 and ending with a termination codon (TGA) at position 622. One putative polyadenylation signal (AATAAA) is identified at positions 951 in the 3' untranslated region, and 6 additional stop codons are located at positions 628, 769, 901, 946, 967, and 982 downstream from the start codon. In the 5' promoter region, a putative TATA box (TATTATTA) is located at position -72 upstream from the start codon. The deduced amino acid sequence has 207 residues and includes a putative signal peptide of 21 residues. CONCLUSIONS: The results reveal for the first time information on the structure of a major peanut allergen, Ara h 2. Comparison of the cDNA and genomic sequences revealed the absence of an intron but the presence of 2 isoforms of Ara h 2 or different members of the same gene family.
机译:背景:花生已被确认为潜在的食物过敏原,可导致超敏个体中威胁生命的IgE反应。随着当前花生过敏症的增加,迫切需要对编码靶蛋白的基因进行分子表征并了解其调控的性质。目的:本研究的目的是分离,测序和鉴定至少一个编码主要花生过敏原Ara h 2的全长基因组克隆。方法:使用Lambda Fix II载体构建的花生基因组文库进行了筛选。 80 bp的寡核苷酸探针,是根据已公开的Ara h 2 cDNA部分序列的5'末端构建的。分离出一个推定的阳性λ克隆,用Bam HI消化以释放其16-kb插入片段,并通过斑点印迹和Southern杂交来证实。将阳性克隆亚克隆到pBluescript SK +载体中,测序并鉴定。结果:序列分析揭示了一个全长基因组克隆,其开放阅读框位于第1位的起始密码子(ATG),到第622位的终止密码子(TGA)。鉴定出一个推定的多腺苷酸化信号(AATAAA)。在3'非翻译区中的位置951,并且另外的6个终止密码子位于起始密码子下游的位置628、769、901、946、967和982。在5'启动子区域,推定的TATA盒(TATTATTA)位于起始密码子上游的-72位。推导的氨基酸序列具有207个残基,并包括21个残基的推定信号肽。结论:该结果首次揭示了花生主要过敏原Ara h 2的结构信息。cDNA和基因组序列的比较显示,没有内含子,但存在2种亚型的Ara h 2或不同成员的Ara h 2。同一个基因家族。

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