Xu Zuyuan, Chikka Madhusudana Rao, Xia Hongai, Ready Donald F
Department of Biological Sciences, Purdue University, West Lafayette, IN 47907, USA.
Department of Biological Sciences, Purdue University, West Lafayette, IN 47907, USA
J Cell Sci. 2016 Mar 1;129(5):921-9. doi: 10.1242/jcs.180406. Epub 2016 Jan 19.
The endoplasmic reticulum (ER) serves virtually all aspects of cell physiology and, by pathways that are incompletely understood, is dynamically remodeled to meet changing cell needs. Inositol-requiring enzyme 1 (Ire1), a conserved core protein of the unfolded protein response (UPR), participates in ER remodeling and is particularly required during the differentiation of cells devoted to intense secretory activity, so-called 'professional' secretory cells. Here, we characterize the role of Ire1 in ER differentiation in the developing Drosophila compound eye photoreceptors (R cells). As part of normal development, R cells take a turn as professional secretory cells with a massive secretory effort that builds the photosensitive membrane organelle, the rhabdomere. We find rough ER sheets proliferate as rhabdomere biogenesis culminates, and Ire1 is required for normal ER differentiation. Ire1 is active early in R cell development and is required in anticipation of peak biosynthesis. Without Ire1, the amount of rough ER sheets is strongly reduced and the extensive cortical ER network at the rhabdomere base, the subrhabdomere cisterna (SRC), fails. Instead, ER proliferates in persistent and ribosome-poor tubular tangles. A phase of Ire1 activity early in R cell development thus shapes dynamic ER.
内质网(ER)几乎参与细胞生理学的所有方面,并通过一些尚未完全了解的途径进行动态重塑,以满足细胞不断变化的需求。肌醇需求酶1(Ire1)是未折叠蛋白反应(UPR)的保守核心蛋白,参与内质网重塑,在致力于高强度分泌活动的细胞(即所谓的“专职”分泌细胞)分化过程中尤为需要。在这里,我们描述了Ire1在果蝇复眼感光细胞(R细胞)发育过程中的内质网分化中的作用。作为正常发育的一部分,R细胞会转变为专职分泌细胞,进行大量的分泌活动以构建感光膜细胞器——微绒毛。我们发现,随着微绒毛生物合成达到顶峰,粗面内质网片层会增殖,而Ire1是正常内质网分化所必需的。Ire1在R细胞发育早期就具有活性,并且在生物合成高峰期之前就需要它。没有Ire1,粗面内质网片层的数量会大幅减少,微绒毛基部广泛的皮质内质网网络——微绒毛下池(SRC)也会出现缺陷。相反,内质网会在持续存在且核糖体含量低的管状缠结中增殖。因此,R细胞发育早期的Ire1活性阶段塑造了动态内质网。