RRC ID 59440
著者 Ashkavand Z, Sarasija S, Ryan KC, Laboy JT, Norman KR.
タイトル Corrupted ER-mitochondrial calcium homeostasis promotes the collapse of proteostasis.
ジャーナル Aging Cell
Abstract Aging and age-related diseases are associated with a decline of protein homeostasis (proteostasis), but the mechanisms underlying this decline are not clear. In particular, decreased proteostasis is a widespread molecular feature of neurodegenerative diseases, such as Alzheimer's disease (AD). Familial AD is largely caused by mutations in the presenilin encoding genes; however, their role in AD is not understood. In this study, we investigate the role of presenilins in proteostasis using the model system Caenorhabditis elegans. Previously, we found that mutations in C. elegans presenilin cause elevated ER to mitochondria calcium signaling, which leads to an increase in mitochondrial generated oxidative stress. This, in turn, promotes neurodegeneration. To understand the cellular mechanisms driving neurodegeneration, using several molecular readouts of protein stability in C. elegans, we find that presenilin mutants have widespread defects in proteostasis. Markedly, we demonstrate that these defects are independent of the protease activity of presenilin and that reduction in ER to mitochondrial calcium signaling can significantly prevent the proteostasis defects observed in presenilin mutants. Furthermore, we show that supplementing presenilin mutants with antioxidants suppresses the proteostasis defects. Our findings indicate that defective ER to mitochondria calcium signaling promotes proteostatic collapse in presenilin mutants by increasing oxidative stress.
巻・号 19(1)
ページ e13065
公開日 2020-1-1
DOI 10.1111/acel.13065
PMID 31714672
PMC PMC6974732
MeSH Animals Calcium / metabolism* Endoplasmic Reticulum Homeostasis / physiology* Humans Proteostasis / physiology*
IF 7.346
引用数 3
リソース情報
線虫 tm6026