[HTML][HTML] Intracellular Citrate/acetyl-CoA flux and endoplasmic reticulum acetylation: Connectivity is the answer

G Fernandez-Fuente, MJ Rigby, L Puglielli - Molecular Metabolism, 2023 - Elsevier
Background Key cellular metabolites reflecting the immediate activity of metabolic enzymes
as well as the functional metabolic state of intracellular organelles can act as powerful signal …

The citrate transporters SLC13A5 and SLC25A1 elicit different metabolic responses and phenotypes in the mouse

G Fernandez-Fuente, KA Overmyer, AJ Lawton… - Communications …, 2023 - nature.com
Cytosolic citrate is imported from the mitochondria by SLC25A1, and from the extracellular
milieu by SLC13A5. In the cytosol, citrate is used by ACLY to generate acetyl-CoA, which …

Naringenin ameliorates amyloid-β pathology and neuroinflammation in Alzheimer's disease

Y Zhu, X Guo, S Li, Y Wu, F Zhu, C Qin… - Communications …, 2024 - nature.com
Alzheimer's disease (AD) is the most common cause of dementia characterized by amyloid-
β (Aβ) deposition, tau hyperphosphorylation, and neuroinflammation. Naringenin (NRG), a …

Protein restriction slows the development and progression of pathology in a mouse model of Alzheimer's disease

R Babygirija, MM Sonsalla, J Mill, I James… - Nature …, 2024 - nature.com
Dietary protein is a critical regulator of metabolic health and aging. Low protein diets are
associated with healthy aging in humans, and dietary protein restriction extends the lifespan …

Increased expression of SLC25A1/CIC causes an autistic-like phenotype with altered neuron morphology

MJ Rigby, NS Orefice, AJ Lawton, M Ma, SL Shapiro… - Brain, 2022 - academic.oup.com
N ε-lysine acetylation within the lumen of the endoplasmic reticulum is a recently
characterized protein quality control system that positively selects properly folded …

SLC13A5/sodium-citrate co-transporter overexpression causes disrupted white matter integrity and an autistic-like phenotype

MJ Rigby, NS Orefice, AJ Lawton, M Ma… - Brain …, 2022 - academic.oup.com
Endoplasmic reticulum-based N ɛ-lysine acetylation serves as an important protein quality
control system for the secretory pathway. Dysfunctional endoplasmic reticulum-based …

Ca+2 and Nε-lysine acetylation regulate the CALR-ATG9A interaction in the lumen of the endoplasmic reticulum

MM Braun, BK Sheehan, SL Shapiro, Y Ding… - Scientific Reports, 2024 - nature.com
The acetylation of autophagy protein 9 A (ATG9A) in the lumen of the endoplasmic reticulum
(ER) by ATase1 and ATase2 regulates the induction of reticulophagy. Analysis of the ER …

Protein restriction slows the development and progression of Alzheimer's disease in mice

R Babygirija, MM Sonsalla, J Mill, I James… - Research …, 2024 - pmc.ncbi.nlm.nih.gov
Dietary protein is a critical regulator of metabolic health and aging. Low protein diets are
associated with healthy aging in humans, and many independent groups of researchers …

ATase inhibition rescues age-associated proteotoxicity of the secretory pathway

M Murie, Y Peng, MJ Rigby, IA Dieterich… - Communications …, 2022 - nature.com
Malfunction of autophagy contributes to the progression of many chronic age-associated
diseases. As such, improving normal proteostatic mechanisms is an active target for …

Spatial selectivity of ATase inhibition in mouse models of Charcot–Marie–Tooth disease

G Fernandez-Fuente, MA Farrugia, Y Peng… - Brain …, 2024 - academic.oup.com
The endoplasmic reticulum acetylation machinery has emerged as a new branch of the
larger endoplasmic reticulum quality control system. It regulates the selection of correctly …