DNA aptamers selectively target Leishmania infantum H2A protein.

Parasites of the genus Leishmania produce leishmaniasis which affects millions people around the world. Understanding the molecular characteristics of the parasite can increase the knowledge about the mechanisms underlying disease development and progression. Thus, the study of the molecular feature...

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Main Authors: M Elena Martín, Marta García-Hernández, Eva M García-Recio, Gerónimo F Gómez-Chacón, Marta Sánchez-López, Víctor M González
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3804487?pdf=render
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spelling doaj-d4b27fe1aba74081b52eb0d404a8cde72020-11-25T02:01:09ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-01810e7888610.1371/journal.pone.0078886DNA aptamers selectively target Leishmania infantum H2A protein.M Elena MartínMarta García-HernándezEva M García-RecioGerónimo F Gómez-ChacónMarta Sánchez-LópezVíctor M GonzálezParasites of the genus Leishmania produce leishmaniasis which affects millions people around the world. Understanding the molecular characteristics of the parasite can increase the knowledge about the mechanisms underlying disease development and progression. Thus, the study of the molecular features of histones has been considered of particular interest because Leishmania does not condense the chromatin during mitosis and, consequently, a different role for these proteins in the biology of the parasite can be expected. Furthermore, the sequence divergences in the amino and in the carboxy-terminal domains of the kinetoplastid core histones convert them in potential diagnostic and/or therapeutics targets. Aptamers are oligonucleotide ligands that are selected in vitro by their affinity and specificity for the target as a consequence of the particular tertiary structure that they are able to acquire depending on their sequence. Development of high-affinity molecules with the ability to recognize specifically Leishmania histones is essential for the progress of this kind of study. Two aptamers which specifically recognize Leishmania infantum H2A histone were cloned from a previously obtained ssDNA enriched population. These aptamers were sequenced and subjected to an in silico analysis. ELONA, slot blot and Western blot were performed to establish aptamer affinity and specificity for LiH2A histone and ELONA assays using peptides corresponding to overlapped sequences of LiH2A were made mapping the aptamers:LiH2A interaction. As "proofs of concept", aptamers were used to determine the number of parasites in an ELONA platform and to purify LiH2A from complex mixtures. The aptamers showed different secondary structures among them; however, both of them were able to recognize the same peptides located in a side of the protein. In addition, we demonstrate that these aptamers are useful for LiH2A identification and also may be of potential application as diagnostic system and as a laboratory tool with purification purpose.http://europepmc.org/articles/PMC3804487?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author M Elena Martín
Marta García-Hernández
Eva M García-Recio
Gerónimo F Gómez-Chacón
Marta Sánchez-López
Víctor M González
spellingShingle M Elena Martín
Marta García-Hernández
Eva M García-Recio
Gerónimo F Gómez-Chacón
Marta Sánchez-López
Víctor M González
DNA aptamers selectively target Leishmania infantum H2A protein.
PLoS ONE
author_facet M Elena Martín
Marta García-Hernández
Eva M García-Recio
Gerónimo F Gómez-Chacón
Marta Sánchez-López
Víctor M González
author_sort M Elena Martín
title DNA aptamers selectively target Leishmania infantum H2A protein.
title_short DNA aptamers selectively target Leishmania infantum H2A protein.
title_full DNA aptamers selectively target Leishmania infantum H2A protein.
title_fullStr DNA aptamers selectively target Leishmania infantum H2A protein.
title_full_unstemmed DNA aptamers selectively target Leishmania infantum H2A protein.
title_sort dna aptamers selectively target leishmania infantum h2a protein.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Parasites of the genus Leishmania produce leishmaniasis which affects millions people around the world. Understanding the molecular characteristics of the parasite can increase the knowledge about the mechanisms underlying disease development and progression. Thus, the study of the molecular features of histones has been considered of particular interest because Leishmania does not condense the chromatin during mitosis and, consequently, a different role for these proteins in the biology of the parasite can be expected. Furthermore, the sequence divergences in the amino and in the carboxy-terminal domains of the kinetoplastid core histones convert them in potential diagnostic and/or therapeutics targets. Aptamers are oligonucleotide ligands that are selected in vitro by their affinity and specificity for the target as a consequence of the particular tertiary structure that they are able to acquire depending on their sequence. Development of high-affinity molecules with the ability to recognize specifically Leishmania histones is essential for the progress of this kind of study. Two aptamers which specifically recognize Leishmania infantum H2A histone were cloned from a previously obtained ssDNA enriched population. These aptamers were sequenced and subjected to an in silico analysis. ELONA, slot blot and Western blot were performed to establish aptamer affinity and specificity for LiH2A histone and ELONA assays using peptides corresponding to overlapped sequences of LiH2A were made mapping the aptamers:LiH2A interaction. As "proofs of concept", aptamers were used to determine the number of parasites in an ELONA platform and to purify LiH2A from complex mixtures. The aptamers showed different secondary structures among them; however, both of them were able to recognize the same peptides located in a side of the protein. In addition, we demonstrate that these aptamers are useful for LiH2A identification and also may be of potential application as diagnostic system and as a laboratory tool with purification purpose.
url http://europepmc.org/articles/PMC3804487?pdf=render
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