cell metabolism
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Recent papers in cell metabolism
This paper provides information sources and ideas for challenge and adventure activities. Main information sources are listed: libraries, ERIC, and several publishers and programs. Some useful publications are described that provide... more
Autophagy is essential for the maintenance of cellular homeostasis during periods of stress. Eisenberg and colleagues (Eisenberg et al., 2014) now describe the central and conserved role for acetyl-CoA synthetase in regulating life span... more
Highlights d Metformin prevents IL-6-dependent thrombosis induced by urban particulate matter d Metformin inhibits mitochondrial complex I to prevent ROSmediated IL-6 release d Metformin inhibits mitochondrial ROS to prevent CRAC channel... more
The circadian clock orchestrates rhythms in physiology and behavior, allowing organismal adaptation to daily environmental changes. While food intake profoundly influences diurnal rhythms in the liver, how nutritional challenges are... more
Type 1 diabetes (T1D) results from the autoimmune destruction of insulin-producing cells. A comprehensive picture of the changes during T1D development is lacking due to limited sample availability, inability to sample longitudinally, and... more
Two mammalian mitochondrial transcription factors (TFB1M and TFB2M) share homology with universally expressed dimethyltransferases that modify conserved adenines in the small ribosomal subunit rRNA. Work in this issue (Metodiev et al.,... more
Rolf Luft, a giant in medicine and a pioneer in the fields of diabetes, endocrinology, and mitochondrial diseases, left us on the 22nd of May, 2007. We have lost not only a great scientist and physician but also a highly gifted, generous,... more
Graphical Abstract Highlights d The susceptibility of CD4 + T cell subsets to HIV-1 matches their metabolic activity d HIV-1 selectively infects CD4 + T cells with enhanced glycolysis and OXPHOS d Inhibition of metabolic activities blocks... more
Highlights d Mitochondrial dysfunction causes lysosomal storage disorder and sphingolipidosis d Respiration-impaired cells increase lysosomal compartment through TFEB d Mitochondrial control of lysosome function restrains inflammatory T... more
When cells release hormones and neurotransmitters through exocytosis, cytosolic Ca 2+ triggers the fusion of secretory vesicles with the plasma membrane. It is well known that this fusion requires assembly of a SNARE protein complex.... more
Highlights d Human BAT has a respiratory capacity 50-to 100-fold greater than that of WAT d Human BAT has functional UCP1 d Per mitochondrion, UCP1 function is similar in human and rodent BAT d BAT and skeletal muscle have similar... more
The role of tryptophan-kynurenine metabolism in psychiatric disease is well established, but remains less explored in peripheral tissues. Exercise training activates kynurenine biotransformation in skeletal muscle, which protects from... more
Common polymorphisms in the first intron of FTO are associated with increased body weight in adults. Previous studies have suggested that a CUX1-regulatory element within the implicated FTO region controls expression of FTO and the nearby... more
Data deposition: All raw and normalized RNA-sequencing data that support the findings of this study have been deposited in the Gene Expression Omnibus SuperSeries database (accession no. GSE118329).
Graphical Abstract Highlights d A POMC mutation is common in the obesity-prone Labrador retriever breed of dog d It disrupts b-MSH and b-endorphin production, both implicated in energy homeostasis d Mutation is absent from other breeds... more
Highlights d Fifty percent of detected metabolites oscillate in mouse liver d Eighteen metabolites cycle in both liver and in the cellautonomous U2 OS system d These oscillations in the U2 OS system are driven by core clock genes d... more
Animals require an immediate response to oxygen availability to allow rapid shifts between oxidative and glycolytic metabolism. These metabolic shifts are highly regulated by the HIF transcription factor. The factor inhibiting HIF (FIH)... more
Thyroid hormones (THs) act in the brain to modulate energy balance. We show that central triiodothyronine (T3) regulates de novo lipogenesis in liver and lipid oxidation in brown adipose tissue (BAT) through the parasympathetic (PSNS) and... more
Leptin regulates energy balance and glucose homeostasis. Shortly after leptin was identified, it was established that obesity is commonly associated with leptin resistance, though the molecular mechanisms remain to be identified. To... more
In type 2 diabetes, pancreatic b cells fail to secrete sufficient insulin to overcome peripheral insulin resistance. Intracellular lipid accumulation contributes to b cell failure through poorly defined mechanisms. Here we report a role... more
Highlights d mtDNA replication dysfunction disturbs the cellular folatedriven one-carbon cycle d mtDNA depletion disorders show low and imbalanced dNTP pools d Multiple mtDNA deletion disorders show imbalanced and high dNTP pools d De... more
Brown (BAT) and white (WAT) adipose tissues play distinct roles in maintaining whole-body energy homeostasis, and their dysfunction can contribute to non-alcoholic fatty liver disease (NAFLD) and type 2 diabetes. The AMP-activated protein... more
Imbalances in glucose and energy homeostasis are at the core of the worldwide epidemic of obesity and diabetes. Here, we illustrate an important role of the TGF-β/Smad3 signaling pathway in regulating glucose and energy homeostasis. Smad3... more
Highlights d High-fat diet induces low-grade bowel inflammatory changes in resident immune cells d Altered gut immunity in obesity contributes to obesity-related insulin resistance d Gut immunity alters gut barrier, fat inflammation, and... more
The liking and selective ingestion of palatable foods-including sweets-is biologically controlled, and dysfunction of this regulation may promote unhealthy eating, obesity, and disease. The hepatokine fibroblast growth factor 21 (FGF21)... more
Obesity and atherosclerosis-related diseases account for over one-third of deaths in the western world. Controlling these conditions remains a major challenge due to an incomplete understanding of the molecular pathways involved. Here, we... more
Highlights d Expression of the gcat gene decreases over the lifespan in three different species d A gcat-rescue pathway leads to increased production of methylglyoxal (MGO) d Both gcat impairment and low-dose MGO promote C. elegans... more
WNK1 and WNK4 mutations have been reported to cause pseudohypoaldosteronism type II (PHAII), an autosomal-dominant disorder characterized by hyperkalemia and hypertension. To elucidate the molecular pathophysiology of PHAII, we generated... more
Obesity and type 2 diabetes have a heritable component that is not attributable to genetic factors. Instead, epigenetic mechanisms may play a role. We have developed a mouse model of intrauterine growth restriction (IUGR) by in utero... more
We tested whether leptin can ameliorate diabetes independent of weight loss by defining the lowest dose at which leptin treatment of ob/ob mice reduces plasma glucose and insulin concentration. We found that a leptin dose of 12.5 ng/hr... more
The beneficial effects of physical activity (PA) are well documented, yet the mechanisms by which PA prevents disease and improves health outcomes are poorly understood. To identify major gaps in knowledge and potential strategies for... more
Peripheral processes that mediate beneficial effects of exercise on the brain remain sparsely explored. Here, we show that a muscle secretory factor, cathepsin B (CTSB) protein, is important for the cognitive and neurogenic benefits of... more
Hypothalamic neuropeptide Y (NPY) has been implicated in control of energy balance, but the physiological importance of NPY in the dorsomedial hypothalamus (DMH) remains unclear. Here we report that knockdown of NPY expression in the DMH... more
NAD(+) has emerged as a vital cofactor that can rewire metabolism, activate sirtuins, and maintain mitochondrial fitness through mechanisms such as the mitochondrial unfolded protein response. This improved understanding of NAD(+)... more
Transfer RNAs (tRNAs) contain a wide variety of posttranscriptional modifications that are important for accurate decoding. Mammalian mitochondrial tRNAs (mt-tRNAs) are modified by nuclear-encoded tRNA-modifying enzymes; however, the... more
Although CD8 T-cell-mediated autoimmune β cell destruction occurs in type 1 diabetes (T1D), the target epitopes processed and presented by β cells are unknown. To identify them, we combined peptidomics and transcriptomics strategies.... more
Dietary restriction (DR) was shown to impact on tumor growth with very variable effects depending on the cancer type. However, how DR limits cancer progression remains largely unknown. Here, we demonstrate that feeding mice a low-protein... more
Cancer metastasis accounts for the majority of cancer-related deaths and remains a clinical challenge. Metastatic cancer cells generally resemble cells of the primary cancer, but they may be influenced by the milieu of the organs they... more
Resveratrol induces mitochondrial biogenesis and protects against metabolic decline but whether SIRT1 mediates these benefits is the subject of debate. To circumvent the developmental defects of germ-line SIRT1 knockouts, we have... more
Hypoxic tumor-associated macrophages (TAMs) acquire angiogenic and immunosuppressive properties. Yet it remains unknown if metabolic changes influence these functions. Here, we argue that hypoxic TAMs strongly upregulate the expression of... more
Skeletal muscle atrophy is a common and debilitating condition that lacks a pharmacologic therapy. To develop a potential therapy, we identified 63 mRNAs that were regulated by fasting in both human and mouse muscle, and 29 mRNAs that... more
Chronic, low-grade inflammation triggered by excess intake of dietary lipids has been proposed to contribute to the pathogenesis of metabolic disorders, such as obesity, insulin resistance, type 2 diabetes, and atherosclerosis. Although... more
Pancreatic α cells retain considerable plasticity and can, under the right circumstances, transdifferentiate into functionally mature β cells. In search of a targetable mechanistic basis, a recent paper suggested that the widely used... more
Aerobic glycolysis (the Warburg effect) is a core hallmark of cancer, but the molecular mechanisms underlying it remain unclear. Here, we identify an unexpected central role for mTORC2 in cancer metabolic reprogramming where it controls... more
Highlights d 20 inpatient adults received ultra-processed and unprocessed diets for 14 days each d Diets were matched for presented calories, sugar, fat, fiber, and macronutrients d Ad libitum intake was 500 kcal/day more on the... more
Endothelial dysfunction is a central hallmark of diabetes. The transcriptional coactivator PGC-1a is a powerful regulator of metabolism, but its role in endothelial cells remains poorly understood. We show here that endothelial PGC-1a... more