The J-Domain of Heat Shock Protein 40 Can Enhance the Transduction Efficiency of Arginine-Rich Cell-Penetrating Peptides

Author:

Lin Tzu-Yin1,Su Yu-Hsiu1,Lee Kun-Hsiung2,Chuang Chin-Kai1

Affiliation:

1. Division of Animal Technology, Animal Technology Laboratories, Agricultural Technology Research Institute, No. 1, Lane 51, Dahu Road, Xiangshan District, Hsinchu 30093, Taiwan

2. Division of Biotechnology, Animal Technology Institute Taiwan, No. 52, Kedong 2nd Road, Chunan, Miaoli 35059, Taiwan

Abstract

Sense and antisense oligonucleotide pairs encoding cell-penetrating peptides PTD(Tat4757), DPV3A, E162, pVEC, R11, and TP13 were used to construct two sets of pET22b-CPP-DsRed and pET22b-CPP-J-DsRed vectors for CPP-DsRed and CPP-J-DsRed recombinant proteins expression. PTD-DsRed, DPV3A-DsRed, PTD-J-DsRed, and DPV3A-J-DsRed recombinant proteins were expressed in a soluble form. PTD-J-DsRed and DPV3A-J-DsRed recombinant proteins were able to escape fromE. colihost cells into the culture medium. The membrane-penetrating activity of PTD-J-DsRed and DPV3A-J-DsRed recombinant proteins to mammalian cells was more effective than that of PTD-DsRed and DPV3A-DsRed. The route of the cellular membrane translocation of these recombinant proteins is suggested via macropinocytosis followed by an endosomal escape pathway.

Funder

National Science Council

Publisher

Hindawi Limited

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

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