生物
重组DNA
单克隆抗体
抗体
生物化学
遗传学
基因
作者
Dong Liu,Mandy Tseng,Linda F. Epstein,Lydia Green,Brian Chan,Brian D. Soriano,Désirée Lim,Oscar Pan,Christopher M. Murawsky,Chadwick King,Bryan D. Moyer
出处
期刊:F1000Research
[Faculty of 1000]
日期:2016-11-25
卷期号:5: 2764-2764
被引量:32
标识
DOI:10.12688/f1000research.9918.1
摘要
Identification of small and large molecule pain therapeutics that target the genetically validated voltage-gated sodium channel Na V 1.7 is a challenging endeavor under vigorous pursuit. The monoclonal antibody SVmab1 was recently published to bind the Na V 1.7 DII voltage sensor domain and block human Na V 1.7 sodium currents in heterologous cells. We produced purified SVmab1 protein based on publically available sequence information, and evaluated its activity in a battery of binding and functional assays. Herein, we report that our recombinant SVmAb1 does not bind peptide immunogen or purified Na V 1.7 DII voltage sensor domain via ELISA, and does not bind Na V 1.7 in live HEK293, U-2 OS, and CHO-K1 cells via FACS. Whole cell manual patch clamp electrophysiology protocols interrogating diverse Na V 1.7 gating states in HEK293 cells, revealed that recombinant SVmab1 does not block Na V 1.7 currents to an extent greater than observed with an isotype matched control antibody. Collectively, our results show that recombinant SVmab1 monoclonal antibody does not bind Na V 1.7 target sequences or specifically inhibit Na V 1.7 current.
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