Cargando…

Cell-Penetrating Peptide–Peptide Nucleic Acid Conjugates as a Tool for Protein Functional Elucidation in the Native Bacterium

Approximately 30% or more of the total proteins annotated from sequenced bacteria genomes are annotated as hypothetical or uncharacterized proteins. However, elucidation on the function of these proteins is hindered by the lack of simple and rapid screening methods, particularly with novel or hard-t...

Descripción completa

Detalles Bibliográficos
Autores principales: Yokoi, Yasuhito, Kawabuchi, Yugo, Zulmajdi, Abdullah Adham, Tanaka, Reiji, Shibata, Toshiyuki, Muraoka, Takahiro, Mori, Tetsushi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9788395/
https://www.ncbi.nlm.nih.gov/pubmed/36558072
http://dx.doi.org/10.3390/molecules27248944
_version_ 1784858744160518144
author Yokoi, Yasuhito
Kawabuchi, Yugo
Zulmajdi, Abdullah Adham
Tanaka, Reiji
Shibata, Toshiyuki
Muraoka, Takahiro
Mori, Tetsushi
author_facet Yokoi, Yasuhito
Kawabuchi, Yugo
Zulmajdi, Abdullah Adham
Tanaka, Reiji
Shibata, Toshiyuki
Muraoka, Takahiro
Mori, Tetsushi
author_sort Yokoi, Yasuhito
collection PubMed
description Approximately 30% or more of the total proteins annotated from sequenced bacteria genomes are annotated as hypothetical or uncharacterized proteins. However, elucidation on the function of these proteins is hindered by the lack of simple and rapid screening methods, particularly with novel or hard-to-transform bacteria. In this report, we employed cell-penetrating peptide (CPP) –peptide nucleotide acid (PNA) conjugates to elucidate the function of such uncharacterized proteins in vivo within the native bacterium. Paenibacillus, a hard-to-transform bacterial genus, was used as a model. Two hypothetical genes showing amino acid sequence similarity to ι-carrageenases, termed cgiA and cgiB, were identified from the draft genome of Paenibacillus sp. strain YYML68, and CPP–PNA probes targeting the mRNA of the acyl carrier protein gene, acpP, and the two ι-carrageenase candidate genes were synthesized. Upon direct incubation of CPP–PNA targeting the mRNA of the acpP gene, we successfully observed growth inhibition of strain YYML68 in a concentration-dependent manner. Similarly, both the function of the candidate ι-carrageenases were also inhibited using our CPP–PNA probes allowing for the confirmation and characterization of these hypothetical proteins. In summary, we believe that CPP–PNA conjugates can serve as a simple and efficient alternative approach to characterize proteins in the native bacterium.
format Online
Article
Text
id pubmed-9788395
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-97883952022-12-24 Cell-Penetrating Peptide–Peptide Nucleic Acid Conjugates as a Tool for Protein Functional Elucidation in the Native Bacterium Yokoi, Yasuhito Kawabuchi, Yugo Zulmajdi, Abdullah Adham Tanaka, Reiji Shibata, Toshiyuki Muraoka, Takahiro Mori, Tetsushi Molecules Article Approximately 30% or more of the total proteins annotated from sequenced bacteria genomes are annotated as hypothetical or uncharacterized proteins. However, elucidation on the function of these proteins is hindered by the lack of simple and rapid screening methods, particularly with novel or hard-to-transform bacteria. In this report, we employed cell-penetrating peptide (CPP) –peptide nucleotide acid (PNA) conjugates to elucidate the function of such uncharacterized proteins in vivo within the native bacterium. Paenibacillus, a hard-to-transform bacterial genus, was used as a model. Two hypothetical genes showing amino acid sequence similarity to ι-carrageenases, termed cgiA and cgiB, were identified from the draft genome of Paenibacillus sp. strain YYML68, and CPP–PNA probes targeting the mRNA of the acyl carrier protein gene, acpP, and the two ι-carrageenase candidate genes were synthesized. Upon direct incubation of CPP–PNA targeting the mRNA of the acpP gene, we successfully observed growth inhibition of strain YYML68 in a concentration-dependent manner. Similarly, both the function of the candidate ι-carrageenases were also inhibited using our CPP–PNA probes allowing for the confirmation and characterization of these hypothetical proteins. In summary, we believe that CPP–PNA conjugates can serve as a simple and efficient alternative approach to characterize proteins in the native bacterium. MDPI 2022-12-15 /pmc/articles/PMC9788395/ /pubmed/36558072 http://dx.doi.org/10.3390/molecules27248944 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yokoi, Yasuhito
Kawabuchi, Yugo
Zulmajdi, Abdullah Adham
Tanaka, Reiji
Shibata, Toshiyuki
Muraoka, Takahiro
Mori, Tetsushi
Cell-Penetrating Peptide–Peptide Nucleic Acid Conjugates as a Tool for Protein Functional Elucidation in the Native Bacterium
title Cell-Penetrating Peptide–Peptide Nucleic Acid Conjugates as a Tool for Protein Functional Elucidation in the Native Bacterium
title_full Cell-Penetrating Peptide–Peptide Nucleic Acid Conjugates as a Tool for Protein Functional Elucidation in the Native Bacterium
title_fullStr Cell-Penetrating Peptide–Peptide Nucleic Acid Conjugates as a Tool for Protein Functional Elucidation in the Native Bacterium
title_full_unstemmed Cell-Penetrating Peptide–Peptide Nucleic Acid Conjugates as a Tool for Protein Functional Elucidation in the Native Bacterium
title_short Cell-Penetrating Peptide–Peptide Nucleic Acid Conjugates as a Tool for Protein Functional Elucidation in the Native Bacterium
title_sort cell-penetrating peptide–peptide nucleic acid conjugates as a tool for protein functional elucidation in the native bacterium
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9788395/
https://www.ncbi.nlm.nih.gov/pubmed/36558072
http://dx.doi.org/10.3390/molecules27248944
work_keys_str_mv AT yokoiyasuhito cellpenetratingpeptidepeptidenucleicacidconjugatesasatoolforproteinfunctionalelucidationinthenativebacterium
AT kawabuchiyugo cellpenetratingpeptidepeptidenucleicacidconjugatesasatoolforproteinfunctionalelucidationinthenativebacterium
AT zulmajdiabdullahadham cellpenetratingpeptidepeptidenucleicacidconjugatesasatoolforproteinfunctionalelucidationinthenativebacterium
AT tanakareiji cellpenetratingpeptidepeptidenucleicacidconjugatesasatoolforproteinfunctionalelucidationinthenativebacterium
AT shibatatoshiyuki cellpenetratingpeptidepeptidenucleicacidconjugatesasatoolforproteinfunctionalelucidationinthenativebacterium
AT muraokatakahiro cellpenetratingpeptidepeptidenucleicacidconjugatesasatoolforproteinfunctionalelucidationinthenativebacterium
AT moritetsushi cellpenetratingpeptidepeptidenucleicacidconjugatesasatoolforproteinfunctionalelucidationinthenativebacterium