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水貂血清淀粉样蛋白A。基于cDNA序列的表达及一级结构。

Mink serum amyloid A protein. Expression and primary structure based on cDNA sequences.

作者信息

Marhaug G, Husby G, Dowton S B

机构信息

Edward Mallinckrodt Department of Pediatrics, Washington University School of Medicine, St. Louis, Missouri 63110.

出版信息

J Biol Chem. 1990 Jun 15;265(17):10049-54.

PMID:2351648
Abstract

The nucleotide sequences of two mink serum amyloid A (SAA) cDNA clones have been analyzed, one (SAA1) 776 base pairs long and the other (SAA2) 552 base pairs long. Significant differences were discovered when derived amino acid sequences were compared with data for apoSAA isolated from high density lipoprotein. Previous studies of mink protein SAA and amyloid protein A (AA) suggest that only one SAA isotype is amyloidogenic. The cDNA clone for SAA2 defines the "amyloid prone" isotype while SAA1 is found only in serum. Mink SAA1 has alanine in position 10, isoleucine in positions 24, 67, and 71, lysine in position 27, and proline in position 105. Residue 10 in mink SAA2 is valine while arginine and asparagine are at positions 24 and 27, respectively, all characteristics of protein AA isolated from mink amyloid fibrils. Mink SAA2 also has valine in position 67, phenylalanine in position 71, and amino acid 105 is serine. It remains unknown why these six amino acid substitutions render SAA2 more amyloidogenic than SAA1. Eighteen hours after lipopolysaccharide stimulation, mink SAA mRNA is abundant in liver with relatively minor accumulations in brain and lung. Genes encoding both SAA isotypes are expressed in all three organs while no SAA mRNA was detectable in amyloid prone organs, including spleen and intestine, indicating that deposition of AA from locally synthesized SAA is unlikely. A third mRNA species (2.2 kilobases) was identified and hybridizes with cDNA probes for mink SAA1 and SAA2. In addition to a major primary translation product (molecular mass 14,400 Da) an additional product with molecular mass 28,000 Da was immunoprecipitable.

摘要

对两个水貂血清淀粉样蛋白A(SAA)cDNA克隆的核苷酸序列进行了分析,一个(SAA1)长776个碱基对,另一个(SAA2)长552个碱基对。当将推导的氨基酸序列与从高密度脂蛋白中分离的载脂蛋白SAA的数据进行比较时,发现了显著差异。先前对水貂蛋白SAA和淀粉样蛋白A(AA)的研究表明,只有一种SAA同种型具有淀粉样变性。SAA2的cDNA克隆定义了“易形成淀粉样蛋白的”同种型,而SAA1仅存在于血清中。水貂SAA1在第10位是丙氨酸,在第24、67和71位是异亮氨酸,在第27位是赖氨酸,在第105位是脯氨酸。水貂SAA2的第10位残基是缬氨酸,而精氨酸和天冬酰胺分别位于第24和27位,这些都是从水貂淀粉样纤维中分离的蛋白AA的特征。水貂SAA2在第67位也是缬氨酸,在第71位是苯丙氨酸,第105位氨基酸是丝氨酸。尚不清楚为什么这六个氨基酸取代使SAA2比SAA1更易形成淀粉样蛋白。脂多糖刺激18小时后,水貂SAA mRNA在肝脏中大量存在,在脑和肺中的积累相对较少。编码两种SAA同种型的基因在所有三个器官中均有表达,而在包括脾脏和肠道在内的易形成淀粉样蛋白的器官中未检测到SAA mRNA,这表明从局部合成的SAA中沉积AA的可能性不大。鉴定出了第三种mRNA(2.2千碱基),它与水貂SAA1和SAA2的cDNA探针杂交。除了主要的初级翻译产物(分子量14,400 Da)外,还可免疫沉淀出分子量为28,000 Da的另一种产物。

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