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Semiconductor Sequencing for Preimplantation Genetic Testing for Aneuploidy
Published on: August 25, 2019
Aneuploidy Enables Cross-Adaptation to Unrelated Drugs
Feng Yang1, Flora Teoh2, Alrina Shin Min Tan2
1Department of Molecular Microbiology and Biotechnology, School of Molecular Cell Biology and Biotechnology, The George S. Wise Faculty of Life Sciences, Tel Aviv University, Tel Aviv, Israel.
Abstract:
Aneuploidy is common both in tumor cells responding to chemotherapeutic agents and in fungal cells adapting to antifungal drugs. Because aneuploidy simultaneously affects many genes, it has the potential to confer multiple phenotypes to the same cells. Here, we analyzed the mechanisms by which Candida albicans, the most prevalent human fungal pathogen, acquires the ability to survive both chemotherapeutic agents and antifungal drugs. Strikingly, adaptation to both types of drugs was accompanied by the acquisition of specific whole-chromosome aneuploidies, with some aneuploid karyotypes recovered independently and repeatedly from very different drug conditions. Specifically, strains selected for survival in hydroxyurea, an anticancer drug, acquired cross-adaptation to caspofungin, a first-line antifungal drug, and both acquired traits were attributable to trisomy of the same chromosome: loss of trisomy was accompanied by loss of adaptation to both drugs. Mechanistically, aneuploidy simultaneously altered the copy number of most genes on chromosome 2, yet survival in hydroxyurea or caspofungin required different genes and stress response pathways. Similarly, chromosome 5 monosomy conferred increased tolerance to both fluconazole and to caspofungin, antifungals with different mechanisms of action. Thus, the potential for cross-adaptation is not a feature of aneuploidy per se; rather, it is dependent on specific genes harbored on given aneuploid chromosomes. Furthermore, pre-exposure to hydroxyurea increased the frequency of appearance of caspofungin survivors, and hydroxyurea-adapted C. albicans cells were refractory to antifungal drug treatment in a mouse model of systemic candidiasis. This highlights the potential clinical consequences for the management of cancer chemotherapy patients at risk of fungal infections.
Insights
Aneuploidy, or abnormal chromosome number, in Candida albicans can lead to cross-adaptation to both anticancer and antifungal drugs. Specific chromosome gains or losses drive this drug resistance, impacting treatment strategies for infected cancer patients.
Area of Science:
- Microbiology
- Genetics
- Drug Discovery
Background:
- Aneuploidy is frequently observed in both cancer cells and pathogenic fungi.
- Aneuploidy affects numerous genes, potentially conferring multiple new traits (phenotypes) to cells.
- Candida albicans is a major human fungal pathogen with significant clinical implications.
Purpose of the Study:
- To investigate the mechanisms by which Candida albicans acquires resistance to both chemotherapeutic and antifungal drugs.
- To determine if aneuploidy plays a role in this cross-adaptation.
- To identify specific chromosomal changes responsible for drug resistance.
Main Methods:
- Drug selection experiments using Candida albicans exposed to hydroxyurea (anticancer) and caspofungin (antifungal).
- Karyotyping to identify aneuploidies in drug-resistant strains.
- Phenotypic analysis to assess drug tolerance and cross-adaptation.
- In vivo studies using a mouse model of systemic candidiasis.
Main Results:
- Specific whole-chromosome aneuploidies were acquired by C. albicans strains adapting to hydroxyurea or caspofungin.
- Trisomy of a specific chromosome conferred cross-adaptation to both hydroxyurea and caspofungin.
- Monosomy of another chromosome conferred tolerance to fluconazole and caspofungin.
- Pre-exposure to hydroxyurea increased the frequency of caspofungin-resistant survivors.
- Hydroxyurea-adapted strains showed reduced susceptibility to antifungal treatment in vivo.
Conclusions:
- Aneuploidy is a key mechanism for Candida albicans to adapt to diverse drug stresses, including anticancer agents.
- Cross-adaptation is dependent on the specific genes present on the aneuploid chromosome, not aneuploidy itself.
- Drug-resistant C. albicans strains pose a significant clinical challenge, particularly for cancer patients undergoing chemotherapy.
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