Kaplan Gilad, Lee Fred, Onda Masanori, Kolyvas Emily, Bhardwaj Gaurav, Baker David, Pastan Ira
Laboratory of Molecular Biology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892, USA.
Department of Biochemistry, University of Washington, Seattle, WA 98195, USA.
Toxins (Basel). 2016 Jul 25;8(8):217. doi: 10.3390/toxins8080217.
Recombinant immunotoxins (RITs) are fusions of an Fv-based targeting moiety and a toxin. Pseudomonas exotoxin A (PE) has been used to make several immunotoxins that have been evaluated in clinical trials. Immunogenicity of the bacterial toxin and off-target toxicity have limited the efficacy of these immunotoxins. To address these issues, we have previously made RITs in which the Fv is connected to domain III (PE24) by a furin cleavage site (FCS), thereby removing unneeded sequences of domain II. However, the PE24 containing RITs do not contain the naturally occurring disulfide bond around the furin cleavage sequence, because it was removed when domain II was deleted. This could potentially allow PE24 containing immunotoxins to be cleaved and inactivated before internalization by cell surface furin or other proteases in the blood stream or tumor microenvironment. Here, we describe five new RITs in which a disulfide bond is engineered to protect the FCS. The most active of these, SS1-Fab-DS3-PE24, shows a longer serum half-life than an RIT without the disulfide bond and has the same anti-tumor activity, despite being less cytotoxic in vitro. These results have significance for the production of de-immunized, low toxicity, PE24-based immunotoxins with a longer serum half-life.
重组免疫毒素(RITs)是基于Fv的靶向部分与毒素的融合体。铜绿假单胞菌外毒素A(PE)已被用于制备多种在临床试验中进行过评估的免疫毒素。细菌毒素的免疫原性和脱靶毒性限制了这些免疫毒素的疗效。为了解决这些问题,我们之前制备了RITs,其中Fv通过弗林蛋白酶切割位点(FCS)与结构域III(PE24)相连,从而去除了结构域II的不必要序列。然而,含有PE24的RITs在弗林蛋白酶切割序列周围不包含天然存在的二硫键,因为在删除结构域II时该二硫键被去除了。这可能会使含有PE24的免疫毒素在被细胞表面的弗林蛋白酶或血流或肿瘤微环境中的其他蛋白酶内化之前就被切割并失活。在此,我们描述了五种新的RITs,其中设计了一个二硫键来保护FCS。其中活性最高的SS1-Fab-DS3-PE24,与不含二硫键的RIT相比,血清半衰期更长,尽管其体外细胞毒性较小,但具有相同的抗肿瘤活性。这些结果对于生产去免疫、低毒性、具有更长血清半衰期的基于PE24的免疫毒素具有重要意义。