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A protease activity-depleted environment for heterologous proteins migrating towards the leaf cell apoplast.

机译:用于朝向叶片细胞置剂迁移的异源蛋白的蛋白酶活性耗尽环境。

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Recombinant proteins face major constraints along the plant cell secretory pathway, including proteolytic processing compromising their structural integrity. Here, we demonstrate the potential of protease inhibitors as in situ stabilizing agents for recombinant proteins migrating towards the leaf apoplast. Genomic data for Arabidopsis, rice and Nicotiana spp. were assessed to determine the relative incidence of protease families in the cell secretory pathway. Transient expression assays with the model platform Nicotiana benthamiana were then performed to test the efficiency of protease inhibitors in stabilizing proteins targeted to the apoplast. Current genomic data suggest the occurrence of proteases from several families along the secretory pathway, including A1 and A22 Asp proteases; C1A and C13 Cys proteases; and S1, S8 and S10 Ser proteases. In vitro protease assays confirmed the presence of various proteases in N. benthamiana leaves, notably pointing to the deposition of A1- and S1-type activities preferentially in the apoplast. Accordingly, transient expression and secretion of the A1/S1 protease inhibitor, tomato cathepsin D inhibitor (SlCDI), negatively altered A1 and S1 protease activities in this cell compartment, while increasing the leaf apoplast protein content by ~45% and improving the accumulation of a murine diagnostic antibody, C5-1, co-secreted in the apoplast. SlCYS9, an inhibitor of C1A and C13 Cys proteases, had no impact on the apoplast proteases and protein content, but stabilized C5-1 in planta, presumably upstream in the secretory pathway. These data confirm, overall, the potential of protease inhibitors for the in situ protection of recombinant proteins along the plant cell secretory pathway.Digital Object Identifier http://dx.doi.org/10.1111/j.1467-7652.2011.00643.x
机译:重组蛋白面临沿植物细胞分泌途径的主要约束,包括损害其结构完整性的蛋白水解加工。在这里,我们证明了蛋白酶抑制剂的潜力,其原位为其稳定剂稳定剂,用于朝向叶子膜旋转的重组蛋白质。拟南芥,水稻和尼古斯纳的基因组数据 SPP。评估以确定细胞分泌途径中蛋白酶家族的相对发病率。然后进行模型平台的瞬时表达测定尼古特尼沙米氏症以测试蛋白酶抑制剂在稳定蛋白质靶向置剂糖的蛋白质的效率。目前的基因组数据表明,沿着分泌途径的几个家族的蛋白酶发生,包括A1和A22ASP蛋白酶; C1A和C13 CYS蛋白酶;和S1,S8和S10 SER蛋白酶。在体外蛋白酶测定证实了在 n中存在各种蛋白酶的存在。 Benthamiana 叶子,特别是在术中优先指向A1-和S1型活性的沉积。因此,A1 / S1蛋白酶抑制剂的瞬时表达和分泌,番茄组织蛋白酶D抑制剂( SL CDI),在该细胞室中的A1和S1蛋白酶活性发生负面改变,同时增加了叶子血晶蛋白含量〜45%并改善小鼠诊断抗体的积累,C5-1,在术中共分泌。 SL Cys9,C1a和C13 Cys蛋白酶的抑制剂对静体蛋白酶和蛋白质含量没有影响,但在Planta中稳定C5-1,稳定的C5-1 ,可能是在分泌的上游途径。这些数据总的来说,总体上,蛋白酶抑制剂的潜在抑制剂在原位的原位保护沿植物细胞分泌途径保护重组蛋白质。目的对象标识符http://dx.doi.org/10.1111/j。 1467-7652.2011.00643.x.

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