Product References
Chidamide suppresses adipogenic differentiation of bone marrow derived mesenchymal stem cells via increasing REEP2 expression.
iScience
Zhang X,Liu L,Liu X,Huang Q,Liu L,Liu H,Ren S,Wei P,Cheng P,Yao M,Song W,Zhang H,Chen M
Fri Mar 17 00:00:00 EDT 2023
Pathological characteristics of axons and proteome patterns in midbrain dopaminergic neurodegeneration induced by WDR45-deficiency.
Research square
Le W,Wang P,Al-Nusaif M,Zhang J,Yang H,Yang Y,Kim K,Li S,Liu C,Cai H
Thu May 18 00:00:00 EDT 2023
Heteromeric clusters of ubiquitinated ER-shaping proteins drive ER-phagy.
Nature
Foronda H,Fu Y,Covarrubias-Pinto A,Bocker HT,González A,Seemann E,Franzka P,Bock A,Bhaskara RM,Liebmann L,Hoffmann ME,Katona I,Koch N,Weis J,Kurth I,Gleeson JG,Reggiori F,Hummer G,Kessels MM,Qualmann B,Mari M,Dikić I,Hübner CA
Thu Jun 01 00:00:00 EDT 2023
ER proteins decipher the tubulin code to regulate organelle distribution.
Nature
Zheng P,Obara CJ,Szczesna E,Nixon-Abell J,Mahalingan KK,Roll-Mecak A,Lippincott-Schwartz J,Blackstone C
Sat Jan 01 00:00:00 EST 2022
Transverse endoplasmic reticulum expansion in hereditary spastic paraplegia corticospinal axons.
Human molecular genetics
Zhu PP,Hung HF,Batchenkova N,Nixon-Abell J,Henderson J,Zheng P,Renvoisé B,Pang S,Xu CS,Saalfeld S,Funke J,Xie Y,Svara F,Hess HF,Blackstone C
Tue Aug 23 00:00:00 EDT 2022
Dynactin 6 deficiency enhances aging-associated dystrophic neurite formation in mouse brains.
Neurobiology of aging
Sharoar MG,Zhou J,Benoit M,He W,Yan R
Mon Nov 01 00:00:00 EDT 2021
Dynactin 6 deficiency enhances aging-associated dystrophic neurite formation in mouse brains.
Neurobiology of aging
Sharoar MG,Zhou J,Benoit M,He W,Yan R
Mon Nov 01 00:00:00 EDT 2021
Receptor-Mediated ER Export of Lipoproteins Controls Lipid Homeostasis in Mice and Humans.
Cell metabolism
Wang X,Wang H,Xu B,Huang D,Nie C,Pu L,Zajac GJM,Yan H,Zhao J,Shi F,Emmer BT,Lu J,Wang R,Dong X,Dai J,Zhou W,Wang C,Gao G,Wang Y,Willer C,Lu X,Zhu Y,Chen XW
Tue Feb 02 00:00:00 EST 2021
ATL3 Is a Tubular ER-Phagy Receptor for GABARAP-Mediated Selective Autophagy.
Current biology : CB
Chen Q,Xiao Y,Chai P,Zheng P,Teng J,Chen J
Mon Mar 04 00:00:00 EST 2019
DNA damage triggers tubular endoplasmic reticulum extension to promote apoptosis by facilitating ER-mitochondria signaling.
Cell research
Zheng P,Chen Q,Tian X,Qian N,Chai P,Liu B,Hu J,Blackstone C,Zhu D,Teng J,Chen J
Wed Aug 01 00:00:00 EDT 2018
DNA damage triggers tubular endoplasmic reticulum extension to promote apoptosis by facilitating ER-mitochondria signaling.
Cell research
Zheng P,Chen Q,Tian X,Qian N,Chai P,Liu B,Hu J,Blackstone C,Zhu D,Teng J,Chen J
Wed Aug 01 00:00:00 EDT 2018
DNA damage triggers tubular endoplasmic reticulum extension to promote apoptosis by facilitating ER-mitochondria signaling.
Cell research
Zheng P,Chen Q,Tian X,Qian N,Chai P,Liu B,Hu J,Blackstone C,Zhu D,Teng J,Chen J
Wed Aug 01 00:00:00 EDT 2018
Dysfunctional tubular endoplasmic reticulum constitutes a pathological feature of Alzheimer's disease.
Molecular psychiatry
Sharoar MG,Shi Q,Ge Y,He W,Hu X,Perry G,Zhu X,Yan R
Thu Sep 01 00:00:00 EDT 2016
Dysfunctional tubular endoplasmic reticulum constitutes a pathological feature of Alzheimer's disease.
Molecular psychiatry
Sharoar MG,Shi Q,Ge Y,He W,Hu X,Perry G,Zhu X,Yan R
Thu Sep 01 00:00:00 EDT 2016
Reep1 null mice reveal a converging role for hereditary spastic paraplegia proteins in lipid droplet regulation.
Human molecular genetics
Renvoisé B,Malone B,Falgairolle M,Munasinghe J,Stadler J,Sibilla C,Park SH,Blackstone C
Thu Dec 01 00:00:00 EST 2016
Reep1 null mice reveal a converging role for hereditary spastic paraplegia proteins in lipid droplet regulation.
Human molecular genetics
Renvoisé B,Malone B,Falgairolle M,Munasinghe J,Stadler J,Sibilla C,Park SH,Blackstone C
Thu Dec 01 00:00:00 EST 2016
REEP1 and REEP2 proteins are preferentially expressed in neuronal and neuronal-like exocytotic tissues.
Brain research
Hurt CM,Björk S,Ho VK,Gilsbach R,Hein L,Angelotti T
Thu Jan 30 00:00:00 EST 2014
REEP1 and REEP2 proteins are preferentially expressed in neuronal and neuronal-like exocytotic tissues.
Brain research
Hurt CM,Björk S,Ho VK,Gilsbach R,Hein L,Angelotti T
Thu Jan 30 00:00:00 EST 2014
REEP1 and REEP2 proteins are preferentially expressed in neuronal and neuronal-like exocytotic tissues.
Brain research
Hurt CM,Björk S,Ho VK,Gilsbach R,Hein L,Angelotti T
Thu Jan 30 00:00:00 EST 2014