Departamento de Microbiología y Genética, Instituto de Biología Funcional y Genómica, CSIC, Universidad de Salamanca, C/Zacarías González, s/n, 37007 Salamanca, Spain.
Int J Mol Sci. 2022 Oct 14;23(20):12251. doi: 10.3390/ijms232012251.
Chitin synthesis has attracted scientific interest for decades as an essential part of fungal biology and for its potential as a target for antifungal therapies. While this interest remains, three decades ago, pioneering molecular studies on chitin synthesis regulation identified the major chitin synthase in yeast, Chs3, as an authentic paradigm in the field of the intracellular trafficking of integral membrane proteins. Over the years, researchers have shown how the intracellular trafficking of Chs3 recapitulates all the steps in the intracellular trafficking of integral membrane proteins, from their synthesis in the endoplasmic reticulum to their degradation in the vacuole. This trafficking includes specific mechanisms for sorting in the -Golgi network, regulated endocytosis, and endosomal recycling at different levels. This review summarizes the work carried out on chitin synthesis regulation, mostly focusing on Chs3 as a molecular model to study the mechanisms involved in the control of the intracellular trafficking of proteins.
几十年来,几丁质合成一直是真菌生物学的重要组成部分,也是抗真菌治疗的潜在目标,引起了科学界的关注。尽管人们对此仍然感兴趣,但三十年前,对几丁质合成调控的开创性分子研究确定了酵母中的主要几丁质合酶 Chs3 是整合膜蛋白细胞内运输领域的一个真正的范例。多年来,研究人员已经展示了 Chs3 的细胞内运输如何重现整合膜蛋白细胞内运输的所有步骤,从内质网中的合成到液泡中的降解。这种运输包括在高尔基体网络中的特定分拣机制、受调控的内吞作用以及不同水平的内体再循环。这篇综述总结了几丁质合成调控方面的工作,主要集中在 Chs3 作为一个分子模型来研究控制蛋白质细胞内运输的机制。