AI Article Synopsis

  • * Key findings include the identification of CZF1, a transcription factor gene that, when overexpressed, correlates with CDR, and its null mutants show increased sensitivity to drugs, regardless of known resistance mechanisms.
  • * The research highlights a new transcribed region near the TAC1 gene and suggests that better understanding Czf1's role could lead to improved therapeutic strategies against Candida infections.

Article Abstract

Background: Drug susceptible clinical isolates of Candida albicans frequently become highly tolerant to drugs during chemotherapy, with dreadful consequences to patient health. We used RNA sequencing (RNA-seq) to analyze the transcriptomes of a CDR (Candida Drug Resistance) strain and its isogenic drug sensitive counterpart.

Results: RNA-seq unveiled differential expression of 228 genes including a) genes previously identified as involved in CDR, b) genes not previously associated to the CDR phenotype, and c) novel transcripts whose function as a gene is uncharacterized. In particular, we show for the first time that CDR acquisition is correlated with an overexpression of the transcription factor encoding gene CZF1. CZF1 null mutants were susceptible to many drugs, independently of known multidrug resistance mechanisms. We show that CZF1 acts as a repressor of β-glucan synthesis, thus negatively regulating cell wall integrity. Finally, our RNA-seq data allowed us to identify a new transcribed region, upstream of the TAC1 gene, which encodes the major CDR transcriptional regulator.

Conclusion: Our results open new perspectives of the role of Czf1 and of our understanding of the transcriptional and post-transcriptional mechanisms that lead to the acquisition of drug resistance in C. albicans, with potential for future improvements of therapeutic strategies.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3447688PMC
http://dx.doi.org/10.1186/1471-2164-13-396DOI Listing

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