Targeting a c-Myc inhibitory polypeptide to specific intracellular compartments using cell penetrating peptides

被引:70
作者
Bidwell, Gene L., III [1 ]
Davis, Aisha N. [1 ]
Raucher, Drazen [1 ]
机构
[1] Univ Mississippi, Med Ctr, Dept Biochem, Jackson, MS 39216 USA
关键词
Elastin-like polypeptide; c-Myc; Thermal targeting; Cell penetrating peptide; Subcellular localization; ELASTIN-LIKE POLYPEPTIDE; THERMALLY-RESPONSIVE POLYPEPTIDES; PROTEIN-PROTEIN INTERACTION; OVARIAN-CARCINOMA CELLS; ANTIMICROBIAL PEPTIDE; CANCER-THERAPY; DRUG-DELIVERY; SOLID TUMORS; TAT PEPTIDE; NUDE-MICE;
D O I
10.1016/j.jconrel.2008.11.015
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The therapeutic index of current anti-cancer chemotherapeutics can be improved by two major mechanisms: 1) developing drugs which are specifically toxic to the cancer cells and 2) developing methods to deliver drugs to the tumor site. In an attempt to combine these approaches, we developed a thermally responsive polypeptide inhibitor of c-Myc. This polypeptide is based on the thermally responsive Elastin-like polypeptide (ELP). When injected systemically, ELP-fused drugs will aggregate and accumulate at the tumor site where local hyperthermia is applied. ELP was fused to a peptide which blocks c-Myc/Max dimerization (H1), thereby inhibiting transcription activation by c-Myc (ELP-H1). In this study, the cellular uptake, intracellular distribution, and potency of the Pen, Tat and Bac cell penetrating peptides fused to ELP-H1 were evaluated. While Pen-ELP-H1 and Tat-ELP-H1 were localized in the cytoplasm, Bac-ELP-H1 localized to the nucleus in a subset of the cells and was the most potent inhibitor of MCF-7 cell proliferation. This data demonstrates that ELP can be targeted to the desired cellular compartment simply by choice of the CPP used, resulting in a more potent nuclear targeted c-Myc inhibitory polypeptide which may be beneficial in cancer therapy. (C) 2008 Elsevier B.V. All rights reserved.
引用
收藏
页码:2 / 10
页数:9
相关论文
共 53 条
[1]   Conjugates of antisense oligonucleotides with the Tat and antennapedia cell-penetrating peptides: Effects on cellular uptake, binding to target sequences, and biologic actions [J].
Astriab-Fisher, A ;
Sergueev, D ;
Fisher, M ;
Shaw, BR ;
Juliano, RL .
PHARMACEUTICAL RESEARCH, 2002, 19 (06) :744-754
[2]   Inhibition of a protein-protein interaction between INI1 and c-Myc by small peptidomimetic molecules inspired by Helix-1 of c-Myc: identification of a new target of potential antineoplastic interest [J].
Bagnasco, L. ;
Tortolina, L. ;
Biasotti, B. ;
Castagnino, N. ;
Ponassi, R. ;
Tomati, V. ;
Nieddu, E. ;
Stier, G. ;
Malacarne, D. ;
Parodi, S. .
FASEB JOURNAL, 2007, 21 (04) :1256-1263
[3]   Development of elastin-like polypeptide for thermally targeted delivery of doxorubicin [J].
Bidwell, Gene L., III ;
Fokt, Izabela ;
Priebe, Waldemar ;
Raucher, Drazen .
BIOCHEMICAL PHARMACOLOGY, 2007, 73 (05) :620-631
[4]   Enhancing the antiproliferative effect of topoisomerase II inhibitors using a polypeptide inhibitor of c-Myc [J].
Bidwell, GL ;
Raucher, D .
BIOCHEMICAL PHARMACOLOGY, 2006, 71 (03) :248-256
[5]   Application of thermally responsive polypeptides directed against c-Myc transcriptional function for cancer therapy [J].
Bidwell, GL ;
Raucher, D .
MOLECULAR CANCER THERAPEUTICS, 2005, 4 (07) :1076-1085
[6]   ACTIVITY OF N-(2-HYDROXYPROPYL)METHACRYLAMIDE COPOLYMERS CONTAINING DAUNOMYCIN AGAINST A RAT-TUMOR MODEL [J].
CASSIDY, J ;
DUNCAN, R ;
MORRISON, GJ ;
STROHALM, J ;
PLOCOVA, D ;
KOPECEK, J ;
KAYE, SB .
BIOCHEMICAL PHARMACOLOGY, 1989, 38 (06) :875-879
[7]   c-MYC interacts with INI1/hSNF5 and requires the SWI/SNF complex for transactivation function [J].
Cheng, SWG ;
Davies, KP ;
Yung, E ;
Beltran, RJ ;
Yu, J ;
Kalpana, GV .
NATURE GENETICS, 1999, 22 (01) :102-105
[8]  
Daniell H, 1997, Methods Mol Biol, V63, P359
[9]  
DEROSSI D, 1994, J BIOL CHEM, V269, P10444
[10]  
DRAEGER LJ, 1994, J BIOL CHEM, V269, P1785