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

The Genetic Landscape of Familial Pulmonary Fibrosis

家族性肺纤维化的遗传图谱

Liu, Qi; Zhou, Yuan; Cogan, Joy D; Mitchell, Daphne B; Sheng, Quanhu; Zhao, Shilin; Bai, Youhuang; Ciombor, Kristen K; Sabusap, Carleen M; Malabanan, M Merced; Markin, Cheryl R; Douglas, Katrina; Ding, Guixiao; Banovich, Nicholas E; Nickerson, Deborah A; Blue, Elizabeth E; Bamshad, Michael J; Brown, Kevin K; Schwartz, David A; Phillips, John A 3rd; Martinez-Barricarte, Ruben; Salisbury, Margaret L; Shyr, Yu; Loyd, James E; Kropski, Jonathan A; Blackwell, Timothy S

The unfolded protein response transcription factor XBP1s ameliorates Alzheimer's disease by improving synaptic function and proteostasis

未折叠蛋白反应转录因子 XBP1s 通过改善突触功能和蛋白质稳态来改善阿尔茨海默病

Claudia Duran-Aniotz, Natalia Poblete, Catalina Rivera-Krstulovic, Álvaro O Ardiles, Mei Li Díaz-Hung, Giovanni Tamburini, Carleen Mae P Sabusap, Yannis Gerakis, Felipe Cabral-Miranda, Javier Diaz, Matias Fuentealba, Diego Arriagada, Ernesto Muñoz, Sandra Espinoza, Gabriela Martinez, Gabriel Quiroz,

Thromboxane-Prostanoid Receptor Signaling Drives Persistent Fibroblast Activation in Pulmonary Fibrosis

血栓素-前列腺素受体信号驱动肺纤维化中成纤维细胞持续活化

Toshio Suzuki, Jonathan A Kropski, Jingyuan Chen, Erica J Carrier, Xinping Chen, Taylor P Sherrill, Nichelle I Winters, Jane E Camarata, Vasiliy V Polosukhin, Wei Han, Anandharajan Rathinasabapathy, Sergey Gutor, Peter Gulleman, Carleen Sabusap, Nicholas E Banovich, Harikrishna Tanjore, Michael L Fr

Unfolded protein response IRE1/XBP1 signaling is required for healthy mammalian brain aging

未折叠蛋白反应 IRE1/XBP1 信号是健康哺乳动物大脑衰老所必需的

Felipe Cabral-Miranda, Giovanni Tamburini, Gabriela Martinez, Alvaro O Ardiles, Danilo B Medinas, Yannis Gerakis, Mei-Li Diaz Hung, René Vidal, Matias Fuentealba, Tim Miedema, Claudia Duran-Aniotz, Javier Diaz, Cristobal Ibaceta-Gonzalez, Carleen M Sabusap, Francisca Bermedo-Garcia, Paula Mujica, St

Distinct proteostasis states drive pharmacologic chaperone susceptibility for cystic fibrosis transmembrane conductance regulator misfolding mutants

不同的蛋白质稳态状态导致囊性纤维化跨膜传导调节器错误折叠突变体的药理伴侣易感性

Eli Fritz McDonald, Carleen Mae P Sabusap, Minsoo Kim, Lars Plate

The CFTR P67L variant reveals a key role for N-terminal lasso helices in channel folding, maturation, and pharmacologic rescue

CFTR P67L 变体揭示了 N 端套索螺旋在通道折叠、成熟和药物拯救中的关键作用

Carleen Mae Sabusap, Disha Joshi, Luba Simhaev, Kathryn E Oliver, Hanoch Senderowitz, Marcel van Willigen, Ineke Braakman, Andras Rab, Eric J Sorscher, Jeong S Hong

Slowing ribosome velocity restores folding and function of mutant CFTR

核糖体速度减慢可恢复突变 CFTR 的折叠和功能

Kathryn E Oliver, Robert Rauscher, Marjolein Mijnders, Wei Wang, Matthew J Wolpert, Jessica Maya, Carleen M Sabusap, Robert A Kesterson, Kevin L Kirk, Andras Rab, Ineke Braakman, Jeong S Hong, John L Hartman 4th, Zoya Ignatova, Eric J Sorscher

A Comparison between Two Pathophysiologically Different yet Microbiologically Similar Lung Diseases: Cystic Fibrosis and Chronic Obstructive Pulmonary Disease

两种病理生理学不同但微生物学相似的肺部疾病的比较:囊性纤维化和慢性阻塞性肺疾病

Fenker, Daniel E; McDaniel, Cameron T; Panmanee, Warunya; Panos, Ralph J; Sorscher, Eric J; Sabusap, Carleen; Clancy, John P; Hassett, Daniel J

Analysis of cystic fibrosis-associated P67L CFTR illustrates barriers to personalized therapeutics for orphan diseases

囊性纤维化相关 P67L CFTR 分析揭示了孤儿病个性化治疗的障碍

Carleen M Sabusap, Wei Wang, Carmel M McNicholas, W Joon Chung, Lianwu Fu, Hui Wen, Marina Mazur, Kevin L Kirk, James F Collawn, Jeong S Hong, Eric J Sorscher