Amino Acid Metabolism and Transport Mechanisms as Potential Antifungal Targets
Discovering new drugs for treatment of invasive fungal infections is an enduring challenge. There are only three major classes of antifungal agents, and no new class has been introduced into clinical practice in more than a decade. However, recent advances in our understanding of the fungal life cyc...
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doaj-9425060749504adb8e0a12dfcbb1f1fd2020-11-24T20:56:04ZengMDPI AGInternational Journal of Molecular Sciences1422-00672018-03-0119390910.3390/ijms19030909ijms19030909Amino Acid Metabolism and Transport Mechanisms as Potential Antifungal TargetsMatthew W. McCarthy0Thomas J. Walsh1Departments of Medicine, Weill Cornell Medicine of Cornell University, New York, NY 10065, USADepartments of Medicine, Weill Cornell Medicine of Cornell University, New York, NY 10065, USADiscovering new drugs for treatment of invasive fungal infections is an enduring challenge. There are only three major classes of antifungal agents, and no new class has been introduced into clinical practice in more than a decade. However, recent advances in our understanding of the fungal life cycle, functional genomics, proteomics, and gene mapping have enabled the identification of new drug targets to treat these potentially deadly infections. In this paper, we examine amino acid transport mechanisms and metabolism as potential drug targets to treat invasive fungal infections, including pathogenic yeasts, such as species of Candida and Cryptococcus, as well as molds, such as Aspergillus fumigatus. We also explore the mechanisms by which amino acids may be exploited to identify novel drug targets and review potential hurdles to bringing this approach into clinical practice.http://www.mdpi.com/1422-0067/19/3/909amino acid transportersmetabolismantifungal targetscispentacinicofungipensinefungin |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Matthew W. McCarthy Thomas J. Walsh |
spellingShingle |
Matthew W. McCarthy Thomas J. Walsh Amino Acid Metabolism and Transport Mechanisms as Potential Antifungal Targets International Journal of Molecular Sciences amino acid transporters metabolism antifungal targets cispentacin icofungipen sinefungin |
author_facet |
Matthew W. McCarthy Thomas J. Walsh |
author_sort |
Matthew W. McCarthy |
title |
Amino Acid Metabolism and Transport Mechanisms as Potential Antifungal Targets |
title_short |
Amino Acid Metabolism and Transport Mechanisms as Potential Antifungal Targets |
title_full |
Amino Acid Metabolism and Transport Mechanisms as Potential Antifungal Targets |
title_fullStr |
Amino Acid Metabolism and Transport Mechanisms as Potential Antifungal Targets |
title_full_unstemmed |
Amino Acid Metabolism and Transport Mechanisms as Potential Antifungal Targets |
title_sort |
amino acid metabolism and transport mechanisms as potential antifungal targets |
publisher |
MDPI AG |
series |
International Journal of Molecular Sciences |
issn |
1422-0067 |
publishDate |
2018-03-01 |
description |
Discovering new drugs for treatment of invasive fungal infections is an enduring challenge. There are only three major classes of antifungal agents, and no new class has been introduced into clinical practice in more than a decade. However, recent advances in our understanding of the fungal life cycle, functional genomics, proteomics, and gene mapping have enabled the identification of new drug targets to treat these potentially deadly infections. In this paper, we examine amino acid transport mechanisms and metabolism as potential drug targets to treat invasive fungal infections, including pathogenic yeasts, such as species of Candida and Cryptococcus, as well as molds, such as Aspergillus fumigatus. We also explore the mechanisms by which amino acids may be exploited to identify novel drug targets and review potential hurdles to bringing this approach into clinical practice. |
topic |
amino acid transporters metabolism antifungal targets cispentacin icofungipen sinefungin |
url |
http://www.mdpi.com/1422-0067/19/3/909 |
work_keys_str_mv |
AT matthewwmccarthy aminoacidmetabolismandtransportmechanismsaspotentialantifungaltargets AT thomasjwalsh aminoacidmetabolismandtransportmechanismsaspotentialantifungaltargets |
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1716790878792581120 |