Rikkyo University, Faculty of Science, Biophysics Laboratory, Tokyo, Japan.
Autophagy. 2010 Aug;6(6):679-85. doi: 10.4161/auto.6.6.12396. Epub 2010 Aug 19.
Macroautophagy continues to gather increasing attention because it is connected with a wide range of human pathophysiologies, developmental processes and life span extension. It is also an interesting process from a basic cellular biology standpoint, as it involves dynamic membrane rearrangements and multiple protein-protein interactions. Although macroautophagy can be nonspecific, there are many examples of selective sequestration including pexophagy, mitophagy and the cytoplasm to vacuole targeting (Cvt) pathway. At present, the Cvt pathway is unique in that it is the only example of a biosynthetic use of macroautophagy. Most of the autophagy-related (Atg) proteins are involved in the Cvt pathway, and various types of analyses have placed these proteins at particular stages of the process. For example, Atg9 is the only characterized transmembrane protein that is absolutely required for Cvt vesicle formation, and it is proposed to carry membrane from peripheral donor sites to the phagophore assembly site where the vesicle forms. Additional proteins, including Atg11, Atg23 and Atg27 are involved in this anterograde movement, whereas Atg1-Atg13 and Atg2-Atg18 are required for the retrograde return to the peripheral sites. Even when we illustrate our understanding of these events in a schematic model, however, they are by necessity flat two-dimensional representations, lacking movement and sound. Yet the cell is a living entity that is not well served by this sole method of information display. Accordingly, we decided to present the Cvt pathway as a vibrant, dynamic process by combining science, music and illustration.
自噬作用继续受到越来越多的关注,因为它与广泛的人类病理生理学、发育过程和寿命延长有关。从基础细胞生物学的角度来看,它也是一个有趣的过程,因为它涉及动态膜重排和多种蛋白质-蛋白质相互作用。虽然自噬作用可能是非特异性的,但有许多选择性隔离的例子,包括pexophagy、mitophagy 和细胞质到液泡靶向 (Cvt) 途径。目前,Cvt 途径是独特的,因为它是自噬作用的唯一生物合成用途的例子。大多数自噬相关 (Atg) 蛋白都参与了 Cvt 途径,各种类型的分析将这些蛋白置于该过程的特定阶段。例如,Atg9 是唯一被表征的跨膜蛋白,它是 Cvt 囊泡形成所必需的,并且据推测它将膜从周围供体部位携带到吞噬体组装部位,囊泡在此处形成。其他蛋白质,包括 Atg11、Atg23 和 Atg27,参与了这种顺行运动,而 Atg1-Atg13 和 Atg2-Atg18 则是逆行返回周围部位所必需的。然而,即使我们在示意模型中说明了我们对这些事件的理解,但它们在必要时是二维的平面表示,缺乏运动和声音。然而,细胞是一个有生命的实体,这种单一的信息显示方法并不能很好地服务于它。因此,我们决定通过结合科学、音乐和插图,将 Cvt 途径呈现为一个充满活力和动态的过程。