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Ring-Modified Histidine-Containing Cationic Short Peptides Exhibit Anticryptococcal Activity by Cellular Disruption

Delineation of clinical complications secondary to fungal infections, such as cryptococcal meningitis, and the concurrent emergence of multidrug resistance in large population subsets necessitates the need for the development of new classes of antifungals. Herein, we report a series of ring-modified...

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Autores principales: Sharma, Komal, Aaghaz, Shams, Maurya, Indresh Kumar, Singh, Shreya, Rudramurthy, Shivaprakash M., Kumar, Vinod, Tikoo, Kulbhushan, Jain, Rahul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9821961/
https://www.ncbi.nlm.nih.gov/pubmed/36615282
http://dx.doi.org/10.3390/molecules28010087
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author Sharma, Komal
Aaghaz, Shams
Maurya, Indresh Kumar
Singh, Shreya
Rudramurthy, Shivaprakash M.
Kumar, Vinod
Tikoo, Kulbhushan
Jain, Rahul
author_facet Sharma, Komal
Aaghaz, Shams
Maurya, Indresh Kumar
Singh, Shreya
Rudramurthy, Shivaprakash M.
Kumar, Vinod
Tikoo, Kulbhushan
Jain, Rahul
author_sort Sharma, Komal
collection PubMed
description Delineation of clinical complications secondary to fungal infections, such as cryptococcal meningitis, and the concurrent emergence of multidrug resistance in large population subsets necessitates the need for the development of new classes of antifungals. Herein, we report a series of ring-modified histidine-containing short cationic peptides exhibiting anticryptococcal activity via membrane lysis. The N-1 position of histidine was benzylated, followed by iodination at the C-5 position via electrophilic iodination, and the dipeptides were obtained after coupling with tryptophan. In vitro analysis revealed that peptides Trp-His[1-(3,5-di-tert-butylbenzyl)-5-iodo]-OMe (10d, IC(50) = 2.20 μg/mL; MIC = 4.01 μg/mL) and Trp-His[1-(2-iodophenyl)-5-iodo)]-OMe (10o, IC(50) = 2.52 μg/mL; MIC = 4.59 μg/mL) exhibit promising antifungal activities against C. neoformans. When administered in combination with standard drug amphotericin B (Amp B), a significant synergism was observed, with 4- to 16-fold increase in the potencies of both peptides and Amp B. Electron microscopy analysis with SEM and TEM showed that the dipeptides primarily act via membrane disruption, leading to pore formation and causing cell lysis. After entering the cells, the peptides interact with the intracellular components as demonstrated by confocal laser scanning microscopy (CLSM).
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spelling pubmed-98219612023-01-07 Ring-Modified Histidine-Containing Cationic Short Peptides Exhibit Anticryptococcal Activity by Cellular Disruption Sharma, Komal Aaghaz, Shams Maurya, Indresh Kumar Singh, Shreya Rudramurthy, Shivaprakash M. Kumar, Vinod Tikoo, Kulbhushan Jain, Rahul Molecules Article Delineation of clinical complications secondary to fungal infections, such as cryptococcal meningitis, and the concurrent emergence of multidrug resistance in large population subsets necessitates the need for the development of new classes of antifungals. Herein, we report a series of ring-modified histidine-containing short cationic peptides exhibiting anticryptococcal activity via membrane lysis. The N-1 position of histidine was benzylated, followed by iodination at the C-5 position via electrophilic iodination, and the dipeptides were obtained after coupling with tryptophan. In vitro analysis revealed that peptides Trp-His[1-(3,5-di-tert-butylbenzyl)-5-iodo]-OMe (10d, IC(50) = 2.20 μg/mL; MIC = 4.01 μg/mL) and Trp-His[1-(2-iodophenyl)-5-iodo)]-OMe (10o, IC(50) = 2.52 μg/mL; MIC = 4.59 μg/mL) exhibit promising antifungal activities against C. neoformans. When administered in combination with standard drug amphotericin B (Amp B), a significant synergism was observed, with 4- to 16-fold increase in the potencies of both peptides and Amp B. Electron microscopy analysis with SEM and TEM showed that the dipeptides primarily act via membrane disruption, leading to pore formation and causing cell lysis. After entering the cells, the peptides interact with the intracellular components as demonstrated by confocal laser scanning microscopy (CLSM). MDPI 2022-12-22 /pmc/articles/PMC9821961/ /pubmed/36615282 http://dx.doi.org/10.3390/molecules28010087 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
Sharma, Komal
Aaghaz, Shams
Maurya, Indresh Kumar
Singh, Shreya
Rudramurthy, Shivaprakash M.
Kumar, Vinod
Tikoo, Kulbhushan
Jain, Rahul
Ring-Modified Histidine-Containing Cationic Short Peptides Exhibit Anticryptococcal Activity by Cellular Disruption
title Ring-Modified Histidine-Containing Cationic Short Peptides Exhibit Anticryptococcal Activity by Cellular Disruption
title_full Ring-Modified Histidine-Containing Cationic Short Peptides Exhibit Anticryptococcal Activity by Cellular Disruption
title_fullStr Ring-Modified Histidine-Containing Cationic Short Peptides Exhibit Anticryptococcal Activity by Cellular Disruption
title_full_unstemmed Ring-Modified Histidine-Containing Cationic Short Peptides Exhibit Anticryptococcal Activity by Cellular Disruption
title_short Ring-Modified Histidine-Containing Cationic Short Peptides Exhibit Anticryptococcal Activity by Cellular Disruption
title_sort ring-modified histidine-containing cationic short peptides exhibit anticryptococcal activity by cellular disruption
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9821961/
https://www.ncbi.nlm.nih.gov/pubmed/36615282
http://dx.doi.org/10.3390/molecules28010087
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