Panepinto John C, Williamson Peter R
Section of Infectious Diseases, Department of Medicine, University of Illinois at Chicago, Chicago, IL 60612, USA.
FEMS Yeast Res. 2006 Jun;6(4):489-98. doi: 10.1111/j.1567-1364.2006.00078.x.
The use of insertional mutagenesis to discover genes that impact laccase activity has resulted in the identification of multiple cellular processes that affect the fitness of Cryptococcus neoformans. Fitness has been defined as the ability of an organism to propagate and evolve within a given environment. Because the human host is an evolutionary dead-end for an opportunistic pathogen, we have defined pathogenic fitness here as the capability to successfully propagate within the stressful environment of the host, causing disease by expression of virulence traits that damage the host. In this review, laccase-deficient insertional mutants will be highlighted in terms of the basic biological processes in which they are involved. The impact of laccase-associated cellular functions on fitness and virulence will be discussed, as will the mutants' potential as therapeutic targets. Vacuolar function, copper homeostasis, mitochondrial function and carbon repression are covered.
利用插入诱变来发现影响漆酶活性的基因,已导致鉴定出多个影响新型隐球菌适应性的细胞过程。适应性被定义为生物体在给定环境中繁殖和进化的能力。由于人类宿主对于机会性病原体而言是进化的死胡同,因此我们在此将致病适应性定义为在宿主的应激环境中成功繁殖的能力,通过表达损害宿主的毒力性状而致病。在本综述中,将根据漆酶缺陷型插入突变体所涉及的基本生物学过程对其进行重点介绍。将讨论与漆酶相关的细胞功能对适应性和毒力的影响,以及这些突变体作为治疗靶点的潜力。涵盖了液泡功能、铜稳态、线粒体功能和碳代谢阻遏。