Weatherall Institute of Molecular Medicine, MRC Molecular Haematology Unit, University of Oxford, Oxford, OX3 9DS, UK.
Leeds Institute of Medical Research at St. James's, St James's University Hospital, Beckett Street, Leeds, LS9 7TF, UK.
Sci Rep. 2019 Jun 12;9(1):8553. doi: 10.1038/s41598-019-44908-7.
Many tumour causing proteins, such as those expressed after chromosomal translocations or from point mutations, are intracellular and are not enzymes per se amenable to conventional drug targeting. We previously demonstrated an approach (Antibody-antigen Interaction Dependent Apoptosis (AIDA)) whereby a single anti-β-galactosidase intracellular single chain Fv antibody fragment, fused to inactive procaspase-3, induced auto-activation of caspase-3 after binding to the tetrameric β-galactosidase protein. We now demonstrate that co-expressing an anti-RAS heavy chain single VH domain, that binds to mutant RAS several thousand times more strongly than to wild type RAS, with a complementary light chain VL domain, caused programmed cell death (PCD) in mutant RAS expressing cells when each variable region is fused to procaspase-3. The effect requires binding of both anti-RAS variable region fragments and is RAS-specific, producing a tri-molecular complex that auto-activates the caspase pathway leading to cell death. AIDA can be generally applicable for any target protein inside cells by involving appropriate pairs of antigen-specific intracellular antibodies.
许多致癌蛋白,如染色体易位或点突变后表达的蛋白,都是细胞内蛋白,本身不是酶,不能用传统的药物靶向方法进行治疗。我们之前已经证明了一种方法(抗体-抗原相互作用依赖性细胞凋亡(AIDA)),即通过将单个抗β-半乳糖苷酶细胞内单链 Fv 抗体片段与无活性的 procaspase-3 融合,在与四聚体β-半乳糖苷酶蛋白结合后,诱导 caspase-3 的自动激活。现在我们证明,当每个可变区与 procaspase-3 融合时,共表达与突变 RAS 结合的抗 RAS 重链单 VH 结构域(比野生型 RAS 强几千倍)和互补的轻链 VL 结构域,会导致表达突变 RAS 的细胞发生程序性细胞死亡(PCD)。该效应需要结合两个抗 RAS 可变区片段,并且是 RAS 特异性的,产生一个三分子复合物,自动激活导致细胞死亡的 caspase 途径。AIDA 可以通过涉及适当的抗原特异性细胞内抗体,普遍适用于任何细胞内的靶蛋白。