Mendes Niege S, Silva Patricia M, Silva-Rocha Rafael, Martinez-Rossi Nilce M, Rossi Antonio
Department of Genetics Ribeirão Preto Medical School University of São Paulo Ribeirão Preto SP Brazil.
Department of Molecular and Cellular Biology Ribeirão Preto Medical School University of São Paulo Ribeirão Preto SP Brazil.
FEBS Open Bio. 2016 Mar 14;6(4):358-68. doi: 10.1002/2211-5463.12047. eCollection 2016 Apr.
For this study, we sought to identify pre-mRNA processing events modulated by changes in extracellular pH, inorganic phosphate, and antifungal drugs. We examined genes with at least four putative introns whose transcriptional level responded to these effectors. We showed that the intron retention levels of genes encoding asparagine synthetase 2, C6-zinc finger regulator (fluffy), and a farnesyltransferase respond to amphotericin B, ketoconazole, and other effectors. In general, the assayed antifungals promoted the disruption of the structural domains of these proteins probably leading to their inactivation, which emphasize the complexity of the metabolic modulation exerted by antifungal signaling.
在本研究中,我们试图确定由细胞外pH值、无机磷酸盐和抗真菌药物变化所调节的前体mRNA加工事件。我们研究了那些转录水平对这些效应物有反应且至少有四个推定内含子的基因。我们发现,编码天冬酰胺合成酶2、C6锌指调节因子(蓬松蛋白)和一种法尼基转移酶的基因的内含子保留水平对两性霉素B、酮康唑和其他效应物有反应。一般来说,所检测的抗真菌药物会促进这些蛋白质结构域的破坏,可能导致其失活,这凸显了抗真菌信号传导所产生的代谢调节的复杂性。