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

Neurofilament accumulation disrupts autophagy in giant axonal neuropathy.

神经丝积累会破坏巨轴突神经病变中的自噬作用

Paumier Jean-Michel, Zewe James, Panja Chiranjit, Pergande Melissa R, Venkatesan Meghana, Israeli Eitan, Prasad Shikha, Snider Natasha, Savas Jeffrey N, Opal Puneet

A framework for medical physics compensation in an academic department

学术部门医学物理薪酬框架

Gierga, David P; Zewe, Tiffany; Yoon, Su; Bortfeld, Thomas R

PI(4,5)P2 diffuses freely in the plasma membrane even within high-density effector protein complexes

PI(4,5)P2 即使在高密度效应蛋白复合物中也能在质膜中自由扩散

Jonathan Pacheco, Anna C Cassidy, James P Zewe, Rachel C Wills, Gerald R V Hammond

Gigaxonin is required for intermediate filament transport

中间丝运输需要 Gigaxonin

Bhuvanasundar Renganathan, James P Zewe, Yuan Cheng, Jean-Michel Paumier, Mark Kittisopikul, Karen M Ridge, Puneet Opal, Vladimir I Gelfand

A novel homeostatic mechanism tunes PI(4,5)P2-dependent signaling at the plasma membrane

一种新的稳态机制调节质膜上PI(4,5)P2依赖的信号

Rachel C Wills, Colleen P Doyle, James P Zewe, Jonathan Pacheco, Scott D Hansen, Gerald R V Hammond

Probing the subcellular distribution of phosphatidylinositol reveals a surprising lack at the plasma membrane

探究磷脂酰肌醇的亚细胞分布,发现质膜上存在令人惊讶的缺乏

James P Zewe, April M Miller, Sahana Sangappa, Rachel C Wills, Brady D Goulden, Gerald R V Hammond

A high-avidity biosensor reveals plasma membrane PI(3,4)P2 is predominantly a class I PI3K signaling product

高亲和力生物传感器揭示质膜 PI(3,4)P2 主要是 I 类 PI3K 信号产物

Brady D Goulden, Jonathan Pacheco, Allyson Dull, James P Zewe, Alexander Deiters, Gerald R V Hammond

PI(4,5)P2 controls plasma membrane PI4P and PS levels via ORP5/8 recruitment to ER-PM contact sites

PI(4,5)P2 通过 ORP5/8 募集至 ER-PM 接触位点来控制质膜 PI4P 和 PS 水平

Mira Sohn, Marek Korzeniowski, James P Zewe, Rachel C Wills, Gerald R V Hammond, Jana Humpolickova, Lukas Vrzal, Dominika Chalupska, Vaclav Veverka, Gregory D Fairn, Evzen Boura, Tamas Balla

SAC1 degrades its lipid substrate PtdIns4 P in the endoplasmic reticulum to maintain a steep chemical gradient with donor membranes

SAC1 在内质网中降解其脂质底物 PtdIns4 P,以与供体膜维持陡峭的化学梯度

James P Zewe, Rachel C Wills, Sahana Sangappa, Brady D Goulden, Gerald Rv Hammond

TFEB regulates lysosomal positioning by modulating TMEM55B expression and JIP4 recruitment to lysosomes

TFEB通过调节TMEM55B的表达和JIP4向溶酶体的募集来调控溶酶体的定位。

Willett, Rose; Martina, José A; Zewe, James P; Wills, Rachel; Hammond, Gerald R V; Puertollano, Rosa