a Arkansas Biosciences Institute , Jonesboro , AR , USA.
b Department of Biological Sciences , Jonesboro , AR , USA.
Bioengineered. 2019 Dec;10(1):87-97. doi: 10.1080/21655979.2019.1604037.
Expression of recombinant proteins fused to a novel glycomodule tag, termed hydroxyproline (Hyp)-O-glycosylated peptides (HypGP), was earlier found to boost secreted protein yields up to 500-fold in plant cell culture. Here, this technology was applied to the expression of human protease inhibitor α1-antitrypsin (AAT) in tobacco BY-2 cell culture. A designer HypGP tag composed of a 'Ala-Pro' motif of 20 units, or (AP), was engineered either at the N- or C-terminal end of AAT. The (AP) tag substantially increased the secreted yields of the recombinant AAT up to 34.7 mg/L. However, the (AP)-tagged AAT products were frequently subjected to proteolytic processing. The intact AAT-(AP) along with some of the truncated AAT domains exhibited desired biological activity in inhibiting elastase. The results from this research demonstrated that the designer (AP) module engineered in BY-2 cells could function as a molecular carrier to substantially enhance the secreted yields of the recombinant AAT.
先前发现,将融合了新型糖基化结构域标签的重组蛋白(称为羟脯氨酸(Hyp)-O-糖肽(HypGP))表达,可以将植物细胞培养中分泌蛋白的产量提高多达 500 倍。在此,该技术应用于烟草 BY-2 细胞培养中表达人蛋白酶抑制剂α1-抗胰蛋白酶(AAT)。设计的 HypGP 标签由 20 个单位的“丙氨酸-脯氨酸”(AP)基序组成,或(AP),分别被工程化到 AAT 的 N 或 C 末端。(AP)标签大大增加了重组 AAT 的分泌产量,达到 34.7mg/L。然而,(AP)标记的 AAT 产物经常受到蛋白水解处理。完整的 AAT-(AP)以及一些截短的 AAT 结构域表现出抑制弹性蛋白酶的所需生物活性。该研究结果表明,在 BY-2 细胞中设计的(AP)模块可以作为分子载体,大大提高重组 AAT 的分泌产量。