期刊文献+

细胞自噬及真菌中自噬研究概述 被引量:10

Overview of autophagy and related research in fungi
原文传递
导出
摘要 细胞自噬是真核生物中广泛存在的、主要依赖于溶酶体或液泡的保守的降解途径,通过降解细胞内过多或异常的蛋白、细胞器等以维持正常的细胞功能。近10年来自噬研究方面的飞速进展显示出自噬与癌症、神经退行性疾病、衰老及心脏病等人类疾病相关。与此同时,自噬在丝状真菌的生长、形态和发育等方面发挥着重要作用,特别是在丝状真菌的细胞分化过程中,自噬起到了关键性作用,如致病性生长、程序性细胞死亡及孢子形成。本文主要论述了什么是自噬,自噬的检测方法及以真菌为对象的自噬研究进展。 Autophagy is a universal lysosomal degradation pathway in eukaryotic cells, and it plays an important role in maintaining normal cell functions by degrading excess or abnormal intracellular proteins, organelles, etc. During the past decade, the rapid progress of research in the field revealed that autophagy principally serves an adaptive role in diverse pathologies, including cancer, neurodegeneration, aging, and heart diseases. Moreover, autophagy also plays an essential role n filamentous fungi during growth, morphology, and development. Importantly, autophagy functions as a key factor during differentiation, such as pathogenic development, programmed cell death, and spore formation. This review focuses on nomenclature and detection of autophagy, and gives a glimpse on related studies about autophagy in lung
出处 《菌物学报》 CAS CSCD 北大核心 2015年第5期871-879,共9页 Mycosystema
基金 国家自然科学基金(31171329 31371403)
关键词 细胞自噬 自噬相应蛋白(Atg) 酵母 丝状真菌 cell autophagy, Atg proteins, yeast, filamentous fungi
  • 相关文献

参考文献35

  • 1Amor C, Dominguez AI, De Lucas JR, Laborda F, 2000. The catabolite inactivation of Aspergillus nidulons isocitrate yase occurs by specific autophagy of peroxisomes Archives of Microbiology, 174:59-66.
  • 2Asakura M, Ninomiya S, Sugimoto M, Oku M, Yamashita S, Okuno T, Sakai Y, Takano Y, 2009. Atg26-mediated pexophagy is required for host invasion by the plant pathogenic fungus Colletotrichum orbiculere. Plant Cell, 21:1291-1304.
  • 3Bartoszewska M, Kiel JA, 2011a. The role of macroautophagy in development of filamentous fungi. Antioxidants and Reox Signofing, 14:2271-2287.
  • 4Bartoszewska M, Kiel JA, Bovenberg RA, Veenhuis M, van der Klei I J, 2011b. Autophagy deficiency promotes 13-1actam production in Penicillium chrysogenum. Applied and Environmental Microbiology, 77:1413-1422.
  • 5Codogno P, Meijer AJ, 2005. Autophagy and signaling: theirrole in cell survival and cell death. Cell Death and Differentiation, 12(Suppl. 2): 1509-1518.
  • 6Dong JY, He HP, Shen YM, Zhang KQ, 2005. Nematicida epipolysulfanyldioxopiperazines from Gliocladium roseum. Journal of Natural Products, 68:1510-1513.
  • 7Edinger AL, Thompson CB, 2004. Death by design: apoptosis, necrosis and autophagy. Current Opinion in Cell Biology, 16:663-669.
  • 8Eskelinen EL, Reggiori F, Baba M, Kovacs AL, Seglen PO, 2011 Seeing is believing: the impact of electron microscopy on autophagy research. Autophagy, 7:935-956.
  • 9Galluzzi L, Vitale I, Abrams JM, Alnemri ES, Baehrecke EH, Blagosklonny MV, Dawson TM, Dawson VL, EI-Deiry WS, Fulda S, Gottlieb E, Green DR, Hengartner MO, Kepp O, Knight RA, Kumar S, Lipton SA, Lu X, Madeo F, Malorni W, Mehlen P, Nunez G, Peter ME, Piacentini M, Rubinsztein DC, Shi Y, Simon HU, Vandenabeele P, White E, Yuan J, Zhivotovsky B, Melino G, Kroemer G, 2012. Molecular definitions of cell death subroutines: recommendations of the Nomenclature Committee on Cell Death 2012. Cell Death and Differentiation, 19:107-120.
  • 10Gardiner DM, Waring P, Howlett epipolythiodioxopiperazine (ETP) class distribution, mode of action, functions Microbiology, 151:1021-1032.

同被引文献107

引证文献10

二级引证文献31

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部