Brandão Fabiana As, Derengowski Lorena S, Albuquerque Patrícia, Nicola André M, Silva-Pereira Ildinete, Poças-Fonseca Marcio J
a Laboratory of Molecular Biology; Department of Cell Biology; Institute of Biological Sciences; University of Brasilia ; Brasilia , DF , Brazil.
b Faculty of Ceilandia; University of Brasilia ; Brasilia , DF , Brazil.
Virulence. 2015;6(6):618-30. doi: 10.1080/21505594.2015.1038014. Epub 2015 Jun 23.
Cryptococcus neoformans undergoes phenotypical changes during host infection in order to promote persistence and survival. Studies have demonstrated that such adaptations require alterations in gene transcription networks by distinct mechanisms. Drugs such as the histone deacetylases inhibitors (HDACi) Sodium Butyrate (NaBut) and Trichostatin A (TSA) can alter the chromatin conformation and have been used to modulate epigenetic states in the treatment of diseases such as cancer. In this work, we have studied the effect of NaBut and TSA on the expression of C. neoformans major virulence phenotypes and on the survival rate of an animal model infected with drugs-treated yeasts. Both drugs affected fungal growth at 37°C more intensely than at 30°C; nonetheless, drugs did not affect cell viability at the concentrations we studied. HDACi also provoked the reduction of the fungal capsule expansion. Phospholipases enzyme activity decreased; mating process and melanin synthesis were also affected by both inhibitors. NaBut led to an increase in the population of cells in G2/M. Treated yeast cells, which were washed in order to remove the drugs from the culture medium prior to the inoculation in the Galleria mellonela infection model, did not cause significant difference at the host survival curve when compared to non-treated cells. Overall, NaBut effects on the impairment of C. neoformans main virulence factors were more intense and stable than the TSA effects.
新型隐球菌在宿主感染期间会发生表型变化,以促进其持续存在和存活。研究表明,这种适应性变化需要通过不同机制改变基因转录网络。诸如组蛋白去乙酰化酶抑制剂(HDACi)丁酸钠(NaBut)和曲古抑菌素A(TSA)等药物可以改变染色质构象,并已被用于调节表观遗传状态以治疗癌症等疾病。在这项工作中,我们研究了NaBut和TSA对新型隐球菌主要毒力表型表达以及对感染了经药物处理酵母的动物模型存活率的影响。两种药物在37°C时对真菌生长的影响比对30°C时更强烈;尽管如此,在所研究的浓度下,药物并未影响细胞活力。HDACi还促使真菌荚膜扩张减少。磷脂酶的酶活性降低;交配过程和黑色素合成也受到两种抑制剂的影响。NaBut导致处于G2/M期的细胞数量增加。在接种到米蛾感染模型之前,对经处理的酵母细胞进行洗涤以从培养基中去除药物,与未处理的细胞相比,在宿主存活曲线上没有造成显著差异。总体而言,NaBut对新型隐球菌主要毒力因子的损害作用比TSA的作用更强烈且更稳定。