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1.
Mol Microbiol ; 79(4): 968-89, 2011 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-21299651

RESUMO

The cell wall is essential for viability of fungi and is an effective drug target in pathogens such as Candida albicans. The contribution of post-transcriptional gene regulators to cell wall integrity in C. albicans is unknown. We show that the C. albicans Ccr4-Pop2 mRNA deadenylase, a regulator of mRNA stability and translation, is required for cell wall integrity. The ccr4/pop2 mutants display reduced wall ß-glucans and sensitivity to the echinocandin caspofungin. Moreover, the deadenylase mutants are compromised for filamentation and virulence. We demonstrate that defective cell walls in the ccr4/pop2 mutants are linked to dysfunctional mitochondria and phospholipid imbalance. To further understand mitochondrial function in cell wall integrity, we screened a Saccharomyces cerevisiae collection of mitochondrial mutants. We identify several mitochondrial proteins required for caspofungin tolerance and find a connection between mitochondrial phospholipid homeostasis and caspofungin sensitivity. We focus on the mitochondrial outer membrane SAM complex subunit Sam37, demonstrating that it is required for both trafficking of phospholipids between the ER and mitochondria and cell wall integrity. Moreover, in C. albicans also Sam37 is essential for caspofungin tolerance. Our study provides the basis for an integrative view of mitochondrial function in fungal cell wall biogenesis and resistance to echinocandin antifungal drugs.


Assuntos
Candida albicans/genética , Parede Celular/ultraestrutura , Proteínas Fúngicas/metabolismo , Mitocôndrias/metabolismo , Ribonucleases/metabolismo , Animais , Candida albicans/efeitos dos fármacos , Candida albicans/metabolismo , Candida albicans/patogenicidade , Caspofungina , Parede Celular/química , Parede Celular/efeitos dos fármacos , Equinocandinas/farmacologia , Proteínas Fúngicas/genética , Perfilação da Expressão Gênica , Regulação Fúngica da Expressão Gênica , Homeostase , Lipopeptídeos , Camundongos , Camundongos Endogâmicos BALB C , Mitocôndrias/ultraestrutura , Mutação , Análise de Sequência com Séries de Oligonucleotídeos , Fosfolipídeos/análise , Poliadenilação , RNA Fúngico/genética , Ribonucleases/genética , Saccharomyces cerevisiae/efeitos dos fármacos , Saccharomyces cerevisiae/genética , Saccharomyces cerevisiae/metabolismo , Virulência , beta-Glucanas/análise
2.
Anal Chem ; 83(19): 7523-30, 2011 Oct 01.
Artigo em Inglês | MEDLINE | ID: mdl-21879760

RESUMO

Primary and secondary amines, including amino acids, biogenic amines, hormones, neurotransmitters, and plant siderophores, are readily derivatized with 6-aminoquinolyl-N-hydroxysuccinimidyl carbamate using easily performed experimental methodology. Complex mixtures of these amine derivatives can be fractionated and quantified using liquid chromatography-electrospray ionization-mass spectrometry (LC-ESI-MS). Upon collision induced dissociation (CID) in a quadrupole collision cell, all derivatized compounds lose the aminoquinoline tag. With the use of untargeted fragmentation scan functions, such as precursor ion scanning, the loss of the aminoquinoline tag (Amq) can be monitored to identify derivatized species; and the use of targeted fragmentation scans, such as multiple reaction monitoring, can be exploited to quantitate amine-containing molecules. Further, with the use of accurate mass, charge state, and retention time, identification of unknown amines is facilitated. The stability of derivatized amines was found to be variable with oxidatively labile derivatives rapidly degrading. With the inclusion of antioxidant and reducing agents, tris(2-carboxyethyl)-phosphine (TCEP) and ascorbic acid, into both extraction solvents and reaction buffers, degradation was significantly decreased, allowing reproducible identification and quantification of amine compounds in large sample sets.


Assuntos
Aminas/análise , Aminas/metabolismo , Estrutura Molecular , Estereoisomerismo
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