Title of article
Designing of RNA Molecule Translating for Activitable Melittin as Selective Targeting of Leishmania Infected Cells
Author/Authors
Akhzari, Soheila Department of Parasitology - School of Veterinary Medicine - University of Tehran, Tehran , Nabian, Sedigheh Department of Parasitology - School of Veterinary Medicine - University of Tehran, Tehran , Shayan, Parviz Department of Parasitology - School of Veterinary Medicine - University of Tehran, Tehran , Mazaheri Nezhad Fard, Ramin Department of Pathobiology - School of Public Health - Tehran University of Medical Sciences, Tehran , Soltani, Minoo Department of Microbiology and Immunology - School of Veterinary Medicine - University of Tehran, Tehran , Taheri, Mohammad Rastegar Reference Laboratory - School of Veterinary Medicine - University of Tehran, Tehran
Pages
11
From page
443
To page
453
Abstract
Background: Leishmaniasis is characterized by strong inflammatory responses
with high levels of inflammatory cytokines that induce microRNA 21 and matrix
metalloproteinases. Melittin has inhibitory effects on proliferation of various cells
via induction of apoptosis. Melittin can be integrated in cell membranes and induce
apoptosis. Thus, designation of biomolecules for the selective destroy of the infected
cells is a treatment option. One approach is the precise engineering of constructs
for the selective expression of melittin in the infected cells.
Methods: For this aim we designed a construct composing melittin nucleotide sequence
and nucleotide sequence coding for polyanionic peptide function inhibitory
element to further guarantee the selective function of melittin in inflamed tissues
and infected cells, were included in a construct as melittin inhibitor via matrix metalloproteinase
degradable linker.
Results: Reverse complementary sequences were designed so melittin sequences
for the selective targeting of Leishmania could be expressed in infected cells using
cell microRNA machinery.
Conclusion: Translation machinery in infected cells with increased miR-21 could
translate melittin, MMP linker and polyanionic inhibitor through a non-canonical
pathway. Then, the MMP linker is degraded and selective killing of Leishmania infected
cells would happen.
Keywords
RNA design , Leishmania spp. , Melittin , miR-21 , microRNA machinery
Journal title
Iranian Journal of Parasitology (IJP)
Serial Year
2021
Record number
2703095
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