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Why just eat in when you can also eat out?

机译:为什么还吃饭什么时候也可以出去吃饭?

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摘要

The current working definition of autophagy is the following: all processes in which intracellular material is degraded within the lysosome/vacuole and where the macromolecular constituents are recycled. There are several ways to classify the different types of autophagy. For example, we can separate autophagy into two primary types, based on the initial site of cargo sequestration. In particular, during microautophagy and chaperone-mediated autophagy, uptake occurs directly at the limiting membrane of the lysosome or vacuole. In contrast, macroautophagy—whether selective or nonselective—and endosomal microautophagy involve sequestration within an autophagosome or an omegasome, or late endosomes/multivesicular bodies, respectively; the key point being that in these types of autophagy the initial sequestration event does not occur at the limiting membrane of the degradative organelle. In any case, the cargo is ultimately delivered into the lysosome or vacuole lumen for subsequent degradation. Thus, I think most autophagy researchers view the degradative organelle as the ultimate destination of the pathway. Indeed, this fits with the general concept that organelles allow reactions to be compartmentalized. With regard to the lysosome or vacuole, this also confers a level of safety by keeping the lytic contents away from the remainder of the cell. If we are willing to slightly modify our definition of autophagy, with a focus on “degradation of a cell’s own components through the lysosomal/vacuolar machinery,” we can include a newly documented process, programmed nuclear destruction (PND).
机译:自噬的当前工作定义如下:所有过程,其中细胞内物质在溶酶体/真空中降解,大分子成分被回收。有几种方法可以对不同类型的自噬进行分类。例如,根据货物隔离的初始位置,我们可以将自噬分为两种主要类型。特别是在微自噬和伴侣介导的自噬过程中,摄取直接发生在溶酶体或液泡的限制性膜上。相反,宏观自噬(无论是选择性的还是非选择性的)和内体微自噬分别涉及隔离在自噬体或ω体或晚期内体/多囊体内。关键是在这些类型的自噬中,最初的螯合事件不会发生在降解细胞器的限制膜上。在任何情况下,货物最终都被送入溶酶体或液泡内腔进行后续降解。因此,我认为大多数自噬研究人员将降解细胞器视为途径的最终目的地。确实,这符合细胞器允许反应区分开的一般概念。关于溶酶体或液泡,这也通过使裂解内容物远离细胞的其余部分而赋予了一定的安全性。如果我们愿意略微修改自噬的定义,并着眼于“通过溶酶体/液泡机制降解细胞自身成分”,则可以包括一个新记录的过程,即程序性核销毁(PND)。

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