Nosanchuk Joshua D, Stark Ruth E, Casadevall Arturo
Division of Infectious Diseases, Department of Medicine, Albert Einstein College of MedicineBronx, NY, USA; Microbiology and Immunology, Albert Einstein College of MedicineBronx, NY, USA.
Department of Chemistry and Biochemistry, The Graduate Center, The City College of New York, The City University of New YorkNew York, NY, USA; Institute for Macromolecular Assemblies, The City University of New YorkNew York, NY, USA.
Front Microbiol. 2015 Dec 22;6:1463. doi: 10.3389/fmicb.2015.01463. eCollection 2015.
The production of melanin significantly enhances the virulence of many important human pathogenic fungi. Despite fungal melanin's importance in human disease, as well as melanin's contribution to the ability of fungi to survive in diverse hostile environments, the structure of melanin remains unsolved. Nevertheless, ongoing research efforts have progressively revealed several notable structural characteristics of this enigmatic pigment, which will be the focus of this review. These compositional and organizational insights could further our ability to develop novel therapeutic approaches to combat fungal disease and enhance our understanding of how melanin is inserted into the cell wall.
黑色素的产生显著增强了许多重要人类致病真菌的毒力。尽管真菌黑色素在人类疾病中具有重要性,以及黑色素对真菌在各种恶劣环境中生存能力的贡献,但黑色素的结构仍未得到解决。然而,正在进行的研究工作已逐步揭示了这种神秘色素的几个显著结构特征,这将是本综述的重点。这些关于组成和组织的见解可能会提高我们开发对抗真菌疾病新治疗方法的能力,并增进我们对黑色素如何插入细胞壁的理解。