Ljujic Mila, Divac Rankov Aleksandra, Kojic Snezana, Miranda Elena, Radojkovic Dragica
Institute of Molecular Genetics and Genetic Engineering, University of Belgrade, Belgrade, Serbia,
Mol Biol Rep. 2014 Sep;41(9):6133-41. doi: 10.1007/s11033-014-3492-z. Epub 2014 Jun 27.
Alpha-1 antitrypsin (AAT) gene is highly polymorphic, with a large number of rare variants whose phenotypic consequences often remain inconclusive. Studies addressing functional characteristics of AAT variants are of significant biomedical importance since deficiency and dysfunctionality of AAT are associated with liver and lung diseases. We report the results of the functional analysis of two naturally occurring AAT variants, G320R and V321F, previously identified in patients with lung disease. Neither of variants has been fully functionally characterized. In order to perform their functional analysis both variants were expressed in prokaryotic and eukaryotic systems and their intracellular localization, activity, stability, and polymerization were determined. The results of this study demonstrated that variants G320R and V321F have neither impaired activity against porcine pancreatic elastase nor propensity to form polymers. However, both variants had altered electrophoretic mobility and reduced thermostability when compared to M variant of the protein, indicating a slightly impaired secondary or tertiary structure.
α-1抗胰蛋白酶(AAT)基因具有高度多态性,存在大量罕见变体,其表型后果往往尚无定论。鉴于AAT的缺乏和功能失调与肝脏和肺部疾病相关,针对AAT变体功能特性的研究具有重要的生物医学意义。我们报告了两种天然存在的AAT变体G320R和V321F的功能分析结果,这两种变体先前在肺病患者中被鉴定出来。两种变体均未进行全面的功能表征。为了对它们进行功能分析,两种变体均在原核和真核系统中表达,并测定其细胞内定位、活性、稳定性和聚合情况。本研究结果表明,变体G320R和V321F对猪胰弹性蛋白酶的活性均未受损,也没有形成聚合物的倾向。然而,与该蛋白的M变体相比,两种变体的电泳迁移率均发生改变,热稳定性降低,表明其二级或三级结构略有受损。