Title of article :
The CPP Tat enhances eGFP cell internalization and transepithelial transport by the larval midgut of Bombyx mori (Lepidoptera, Bombycidae)
Author/Authors :
Cermenati، نويسنده , , Gaia and Terracciano، نويسنده , , Irma and Castelli، نويسنده , , Ilaria and Giordana، نويسنده , , Barbara and Rao، نويسنده , , Rosa and Pennacchio، نويسنده , , Francesco and Casartelli، نويسنده , , Morena، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2011
Pages :
9
From page :
1689
To page :
1697
Abstract :
Cell-Penetrating Peptides (CPPs) are short peptides that are able to translocate across the cell membrane a wide range of cargoes. In the past decade, different mammalian cell lines have been used to clarify the mechanism of CPPs penetration and to characterize the internalization process, which has been described either as an energy-independent direct penetration through the plasma membrane, or as endocytic uptake. Whatever the mechanism involved, the cell penetration properties of these peptides make their use very attractive as vector for promoting the cellular uptake of coupled bioactive macromolecules, such as peptides, proteins and oligonucleotides. Here we demonstrate, for the first time in insect, that cultured columnar cells from the larval midgut of Bombyx mori more readily internalize eGFP (enhanced Green Fluorescent Protein) when fused to CPP Tat. Tat-eGFP translocates across the plasma membrane of absorptive cells in an energy-independent and non-endocytic manner, since no inhibition of the fusion protein uptake is exerted by metabolic inhibitors and by drugs that interfere with the endocytic uptake. Moreover, the CPP Tat enhances the internalization of eGFP in the columnar cells of intact midgut tissue, mounted in a suitable perfusion apparatus, and the transepithelial flux of the protein. These results open new perspectives for effective delivery of insecticidal macromolecules targeting receptors located both within the insect gut epithelium and behind the gut barrier, in the hemocoel compartment.
Keywords :
Cell penetrating peptides , Tat-eGFP , Internalization process , Transepithelial permeation , Lepidopteran larvae , Midgut columnar cells
Journal title :
Journal of Insect Physiology
Serial Year :
2011
Journal title :
Journal of Insect Physiology
Record number :
1416535
Link To Document :
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