Qasim Mohammad N, Valle Arevalo Ashley, Nobile Clarissa J, Hernday Aaron D
Department of Molecular and Cell Biology, University of California-Merced, Merced, CA 95343, USA.
Quantitative and Systems Biology Graduate Program, University of California-Merced, Merced, CA 95343, USA.
J Fungi (Basel). 2021 Jan 9;7(1):37. doi: 10.3390/jof7010037.
, a diploid polymorphic fungus, has evolved a unique heritable epigenetic program that enables reversible phenotypic switching between two cell types, referred to as "white" and "opaque". These cell types are established and maintained by distinct transcriptional programs that lead to differences in metabolic preferences, mating competencies, cellular morphologies, responses to environmental signals, interactions with the host innate immune system, and expression of approximately 20% of genes in the genome. Transcription factors (defined as sequence specific DNA-binding proteins) that regulate the establishment and heritable maintenance of the white and opaque cell types have been a primary focus of investigation in the field; however, other factors that impact chromatin accessibility, such as histone modifying enzymes, chromatin remodelers, and histone chaperone complexes, also modulate the dynamics of the white-opaque switch and have been much less studied to date. Overall, the white-opaque switch represents an attractive and relatively "simple" model system for understanding the logic and regulatory mechanisms by which heritable cell fate decisions are determined in higher eukaryotes. Here we review recent discoveries on the roles of chromatin accessibility in regulating the white-opaque phenotypic switch.
白色念珠菌是一种二倍体多态性真菌,它进化出了一种独特的可遗传表观遗传程序,能够在两种细胞类型之间进行可逆的表型转换,这两种细胞类型分别称为“白色”和“不透明”。这些细胞类型由不同的转录程序建立和维持,这些转录程序导致代谢偏好、交配能力、细胞形态、对环境信号的反应、与宿主先天免疫系统的相互作用以及基因组中约20%的基因表达存在差异。调节白色和不透明细胞类型的建立和可遗传维持的转录因子(定义为序列特异性DNA结合蛋白)一直是该领域研究的主要焦点;然而,其他影响染色质可及性的因素,如组蛋白修饰酶、染色质重塑因子和组蛋白伴侣复合物,也调节白色-不透明转换的动态,迄今为止对它们的研究要少得多。总体而言,白色-不透明转换代表了一个有吸引力且相对“简单”的模型系统,用于理解高等真核生物中可遗传细胞命运决定的逻辑和调控机制。在这里,我们综述了关于染色质可及性在调节白色-不透明表型转换中作用的最新发现。