Dunn School of Pathology, Oxford, United Kingdom.
Dunn School of Pathology, Oxford, United Kingdom.
J Biol Chem. 2022 Jun;298(6):101935. doi: 10.1016/j.jbc.2022.101935. Epub 2022 Apr 15.
In metazoans, the architecture of the endoplasmic reticulum (ER) differs between cell types and undergoes major changes throughout the cell cycle and according to physiological needs. Although much is known about how the different ER morphologies are generated and maintained, especially ER tubules, how context-dependent changes in ER shape and distribution are regulated and the factors involved are less well characterized, as are the factors that contribute to the positioning of the ER within the cell. By overexpression and KO experiments, we show that the levels of RHBDL4, an ER-resident rhomboid protease, modulate the shape and distribution of the ER, especially during conditions that require rapid changes in the ER sheet distribution, such as ER stress. We demonstrate that RHBDL4 interacts with cytoskeleton-linking membrane protein 63 (CLIMP-63), a protein involved in ER sheet stabilization, as well as with the cytoskeleton. Furthermore, we found that mice lacking RHBDL4 are sensitive to ER stress and develop liver steatosis, a phenotype associated with unresolved ER stress. Taken together, these data suggest a new physiological role for RHBDL4 and also imply that this function does not require its enzymatic activity.
在后生动物中,内质网(ER)的结构在细胞类型之间存在差异,并在整个细胞周期和根据生理需求发生重大变化。尽管人们已经了解了不同 ER 形态的产生和维持方式,尤其是 ER 小管,但 ER 形状和分布的上下文依赖性变化如何受到调节以及涉及哪些因素的特征仍不明显,以及有助于将 ER 定位在细胞内的因素。通过过表达和 KO 实验,我们表明,驻留在 ER 中的 Rhomboid 蛋白酶 RHBDL4 的水平调节 ER 的形状和分布,特别是在需要 ER 薄片分布快速变化的情况下,例如 ER 应激。我们证明 RHBDL4 与细胞骨架连接膜蛋白 63(CLIMP-63)相互作用,CLIMP-63 是一种参与 ER 薄片稳定的蛋白质,以及与细胞骨架相互作用。此外,我们发现缺乏 RHBDL4 的小鼠对 ER 应激敏感,并发展为肝脂肪变性,这是一种与未解决的 ER 应激相关的表型。综上所述,这些数据表明 RHBDL4 具有新的生理作用,也暗示其功能不需要其酶活性。