日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Presenilin mutations disrupt iron homeostasis to promote ferroptosis mediated neurodegeneration in Caenorhabditis elegans

早老素基因突变破坏铁稳态,促进秀丽隐杆线虫中铁死亡介导的神经退行性变。

Ryan, Kerry C; Laboy, Jocelyn T; Ashraf, Rabia; Ashkavand, Zahra; Jayasinghe, Isabel; Norman, Kenneth R

Identification of presenilin mutations that have sufficient gamma-secretase proteolytic activity to mediate Notch signaling but disrupt organelle and neuronal health

鉴定出具有足够γ-分泌酶蛋白水解活性以介导Notch信号通路但会破坏细胞器和神经元健康的早老素突变体。

Ashkavand, Zahra; Ryan, Kerry C; Laboy, Jocelyn T; Patel, Ritika; Geller, Brian; Norman, Kenneth R

C. elegans Presenilin Mediates Inter-Organelle Contacts and Communication that Is Required for Lysosome Activity.

秀丽隐杆线虫早老素介导溶酶体活动所需的细胞器间接触和通讯

Ryan Kerry C, Ashkavand Zahra, Laboy Jocelyn T, Wang Ling, Barroso Margarida, Norman Kenneth R

DEC-7/SUSD2, a sushi domain-containing protein, regulates an ultradian behavior mediated by intestinal epithelial Ca(2+) oscillations in Caenorhabditis elegans

DEC-7/SUSD2 是一种含有寿司结构域的蛋白质,它调节秀丽隐杆线虫肠道上皮细胞 Ca(2+) 振荡介导的超昼夜节律行为。

Laboy, Jocelyn T; Bonner, Jennifer; Norman, Kenneth R

Deregulation of Mitochondrial Calcium Handling Due to Presenilin Loss Disrupts Redox Homeostasis and Promotes Neuronal Dysfunction

早老素缺失导致线粒体钙离子处理失调,破坏氧化还原稳态,促进神经元功能障碍

Ryan, Kerry C; Laboy, Jocelyn T; Norman, Kenneth R

Increased mitochondrial calcium uptake and concomitant mitochondrial activity by presenilin loss promotes mTORC1 signaling to drive neurodegeneration

早老素缺失导致线粒体钙摄取增加和线粒体活性增强,进而促进 mTORC1 信号通路,驱动神经退行性变。

Ryan, Kerry C; Ashkavand, Zahra; Sarasija, Shaarika; Laboy, Jocelyn T; Samarakoon, Rohan; Norman, Kenneth R

Corrupted ER-mitochondrial calcium homeostasis promotes the collapse of proteostasis

内质网-线粒体钙稳态紊乱会促进蛋白质稳态崩溃。

Ashkavand, Zahra; Sarasija, Shaarika; Ryan, Kerry C; Laboy, Jocelyn T; Norman, Kenneth R

Presenilin mutations deregulate mitochondrial Ca(2+) homeostasis and metabolic activity causing neurodegeneration in Caenorhabditis elegans

早老素基因突变会扰乱线虫线粒体Ca(2+)稳态和代谢活动,导致线虫神经退行性变。

Sarasija, Shaarika; Laboy, Jocelyn T; Ashkavand, Zahra; Bonner, Jennifer; Tang, Yi; Norman, Kenneth R