Research published in the Journal of Investigative Dermatology reveals that UV exposure increases energy expenditure by inducing the 'browning' of subcutaneous fat, thereby preventing weight gain. This breakthrough discovery opens up new possibilities for treating obesity and metabolic disorders.
A new study from Washington State University found that just a few days on a night shift schedule can disrupt protein rhythms related to blood glucose regulation and energy metabolism. This dysregulation may lead to chronic metabolic conditions such as diabetes and obesity.
Astragalus polysaccharide regulates VRC metabolism by increasing Bifidobacterium bifidum abundance and reducing inflammation in the liver. This leads to improved VRC metabolism, with high-dose APS showing stronger effects.
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Researchers developed a method to quantify mRNA transcription and degradation rates within individual cell types, uncovering varied regulatory rates across genes. The study provides novel insights into how pluripotent cells adopt specialized identities through gene expression.
The review discusses the basic functions of HXK, SnRK1 and TOR proteins, regulating plant sugar metabolism and response to stress. The study also explores regulatory networks and crosstalk among these proteins for further investigation.
A recent review highlights the positive effects of caloric restriction on cardiovascular health, linked to sirtuin activation and improved lipid metabolism. The study suggests that caloric restriction regulates metabolic processes via NAD+ levels, activating SIRT1 and modulating cardio-protective pathways.
A large-scale animal study reveals that brain pH and lactate levels are a common feature across various neuropsychiatric conditions, including schizophrenia, bipolar disorder, autism, depression, epilepsy, and Alzheimer's disease. Changes in brain energy metabolism are linked to cognitive impairment, particularly working memory.
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Researchers found that obesity increases allosteric regulation during feeding and decreases it when fasting in mice livers. This disruption may lead to metabolic disorders like nonalcoholic fatty liver disease and Type 2 diabetes.
Recent research by scientists at Boyce Thompson Institute reveals that a specific fatty acid produced by gut bacteria directly influences fat metabolism in animals. This discovery sheds light on the complex interplay between diet, gut microbiota, and host metabolic health.
A study published in the Journal of the American College of Surgeons found that gastric bypass surgery results in high rates of Type-2 diabetes remission five years after the operation, even after patients regain a significant amount of weight. In contrast, patients who underwent sleeve gastrectomy and regained their weight were five t...
Researchers found that high levels of FSP1 are associated with relapse after cisplatin treatment in head and neck squamous cell carcinoma. Targeting FSP1 can attenuate tumor stemness and downregulate invasion and metastatic rates, suggesting a potential new approach for treating drug-tolerant persister cancer cells.
The study reveals the role of malate decarboxylase CsNADP-ME2 in balancing carbon and amino acids in cucumber fruit. Overexpression of CsNADP-ME2 increases starch, sucrose, and glucose content, while down-regulation leads to malate accumulation and reduced sugar abundance.
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Chicken sperm can retain fertility and viability for up to three weeks after refrigeration, making it unsuitable for traditional cryopreservation methods. The study found that removing calcium ions impacts energy metabolism dynamics, inducing a physiological dormancy-like state in the sperm cells.
Researchers discovered that individuals with obesity expel more energy at night compared to those with a healthy weight. During the day, people with obesity have higher insulin levels, indicating their body is working harder to process glucose.
Researchers from Helmholtz Munich discovered that GIP decreases body weight by interacting with specific inhibitory neurons in the brain, offering a revolutionary approach to patients worldwide. The study reveals the underlying molecular mechanisms of GIPR:GLP-1R co-agonists and their potential as next-generation anti-obesity drugs.
Researchers found that quasimodo (qsm) gene helps sync feeding to light/dark cycles, while genes clock (clk) and cycle (cyc) govern eating/fasting cycles. This discovery sheds light on animal behavior and potential treatments for eating disorders.
A team of researchers aims to develop drug therapies by targeting genes that affect metabolism in people with Down syndrome, potentially improving their quality of life. The project will focus on the protein SIM2, which has been linked to breast cancer and metabolic changes in individuals with the condition.
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A new study published in Exp. Mol. Med. has identified Thrap3 as a key player in exacerbating non-alcoholic fatty liver disease (NAFLD) by inhibiting AMPK, a crucial regulator of fat metabolism. Inhibiting Thrap3 expression presents a promising avenue for treating NAFLD.
A new study in PNAS discovers a protein, Iditarod, that regulates autophagy in fruit flies, linking exercise to cellular maintenance and cold tolerance. Flies lacking the gene exhibit impaired exercise endurance and reduced ability to tolerate cold.
Researchers have identified a cluster of neurons in the hypothalamus called GABRA5 that regulates energy expenditure. Astrocytes control this cluster, producing tonic GABA that inhibits it, leading to weight gain.
Researchers investigated the role of thyroid hormones in coordinating the metamorphosis of clownfish, discovering a strong interaction between metabolic processes and hormone regulation. Thyroid hormones play a critical role in timing the transformation and supporting energy demands during the journey.
Researchers identified mRNAs and long non-coding RNAs targeted by stress granule proteins, which accumulate AD-associated gene transcripts in these structures. SGs may play a key role in regulating AD development through the impairment of protein neurohomeostasis.
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A multidisciplinary team led by Hong Chen successfully induced a torpor-like state in mice using ultrasound, which also worked on rats. The researchers found that stimulating the hypothalamus preoptic area with ultrasound activated neurons and induced changes in body temperature and metabolism, allowing for the preservation of energy.
Researchers have highlighted the importance of stromal vitamin A pathway in regulating IL-6 expression in colorectal cancer-associated fibroblasts. The study found that disrupting retinol-mediated IL-6 expression could be a potential approach to target CAFs during CRC treatment.
Researchers have identified ATAD3A as a molecular determinant that favors the development of head and neck cancer. The protein is involved in various cellular processes, including energy metabolism and apoptosis. Targeting ATAD3A could offer a novel approach to developing effective anti-cancer therapeutics.
Researchers at Anglia Ruskin University found that a portable breath test can detect changes in metabolism in response to diet. The study used the Lumen device to monitor metabolic fuel use at home and showed that it could detect acute changes in carbohydrate use, but was not sensitive on a day-to-day basis.
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A team of researchers has discovered that chromium(III) supplementation can regulate glucose metabolism in type 2 diabetic mice by targeting ATP synthase activity. This process improves mitochondrial deformation caused by high glucose levels and boosts glucose metabolism.
A research team led by the University of Cincinnati's Atsuo Sasaki aims to understand how an enzyme regulates lysosomal function based on energy molecule GTP. This study could lead to new treatments for cancer, neurodegenerative diseases and anti-aging.
A team of researchers from Ohio University discovered that CIDEC protein improves vascular and metabolic dysfunction, reducing insulin resistance and lipid levels in high-fat diet-induced mice. The study contributes to understanding the role of the vascular endothelium in regulating systemic metabolism.
A study found that regular exercise increases mitochondrial fusion, benefiting muscle cells and maintaining physical fitness even in old age. Daily sessions of exercise throughout life delay the accumulation of dysfunctional mitochondria and decline in physical fitness.
Scientists at the University of Utah Health have discovered a complex network of protein-metabolite interactions within cells that enable them to respond to environmental cues and maintain homeostasis. The study, published in Science, highlights the importance of these interactions in regulating metabolic processes and preventing disease.
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Recent review article discusses clinical development in long-acting growth hormone (LAGH) therapy, which mimics natural GH release patterns. LAGH therapies reduce daily injection burden, improving patient compliance and treatment outcomes.
Researchers at Helmholtz Munich discovered a new protein called Cited1 that plays a crucial role in regulating energy homeostasis and sensitivity to satiety hormones. The study found that females are better protected against obesity due to their higher levels of estrogens, which regulate energy metabolism through the hypothalamus.
Researchers discovered a metabolic difference in lung tumor cells between humans and mice, explaining previous study results. The finding suggests targeting the LKB1-controlled metabolic pathway for lung adenocarcinoma treatment.
Researchers at The Hospital for Sick Children have discovered that dysregulation of energy production is an early sign of heart failure. They found that lysine demethylase 8 (Kdm8) helps maintain balanced energy use, but its suppression leads to changes in metabolism.
Researchers discovered that certain microorganisms dominate burned soil after a wildfire, with some species increasing in abundance and others consuming charcoal. This finding could help revive megafire dead zones and provide insights into the human microbiome's response to stress.
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Macrophages adapt their metabolism according to the organ they reside in, reveals Spanish scientists. This discovery highlights a vulnerability of macrophages that contributes to chronic inflammatory diseases and could be exploited therapeutically for conditions like cardiovascular disease and type 2 diabetes.
Researchers found that Sirtuin 7 regulates brown adipose tissue functions, leading to suppressed energy expenditure and thermogenesis. The study reveals a molecular pathway involving protein deacylation and mRNA binding, which will have implications for treating hypermetabolic conditions like cancer and obesity.
A randomized controlled trial found that daily almond supplementation increased the beneficial fat molecule 12,13-DiHOME in blood plasma after intense exercise. This increase was associated with reduced muscle damage and fatigue, as well as improved recovery from exercise. The researchers suggest that polyphenols in almond skin may be ...
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Great tits with higher glucocorticoid levels in cold weather have better heat production capabilities, increasing their survival chances.
A new study found that early-life experiences can alter gene expression in fruit flies, leading to improved health and extended lifespan. The researchers discovered that changes in chromatin packaging persisted across the lifespan, counteracting normal aging processes.
Researchers found an imbalance in an important immune system signaling pathway associated with severe COVID-19. They detected dysregulation of the immune system mediated by ATP, leading to a pro-inflammatory state and potentially fatal systemic inflammation.
Researchers explore the interactions between adipose tissues and surrounding blood vessels in connection with lipid metabolism and associated diseases. Targeting angiogenesis may provide a gateway for treating obesity, while its inhibition or promotion depends on the specific disease context.
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Inducing a hibernation-like state in mice using Q neuron activation has been shown to protect kidneys from oxygen deprivation and avoid harmful side effects. This technique could lead to new methods of performing heart surgery with reduced organ damage.
Helmholtz Munich researchers identified a novel strategy to alter glucagon receptor signaling by changing its intracellular localization. This approach offers therapeutic potential for treating type 2 diabetes by uncoupling glucose and lipid metabolism-related effects.
A study found that leptin stimulates liver fat export and lowers liver fat content in healthy men, suggesting a new approach for treating fatty liver disease. The findings imply that the brain plays a role in liver fat metabolism via the autonomic nervous system, opening up potential new treatment options.
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Researchers developed a computational platform to identify metabolic vulnerabilities in ovarian cancer genes, suggesting opportunities for targeted therapies. The study found that certain genetic alterations can create vulnerabilities in cancer cell metabolism, which can be exploited to selectively kill cancer cells.
Researchers at the University of Houston have discovered a way to activate the soleus muscle, which can sustain elevated oxidative metabolism and improve blood glucose regulation for hours. The 'soleus pushup' movement has been shown to increase oxygen consumption and reduce insulin requirements.
Researchers discovered a novel mechanism by which non-coding 7S RNA regulates mitochondrial gene expression in human cells. The study found that 7S RNA inhibits transcription via mitochondrial RNA polymerase dimerization, shedding light on the molecular basis of this process.
Researchers developed novel cofactor engineering strategies to enhance NADPH, FAD(H2), and SAM supply, re-localization, and recycling in yeast. This led to the efficient synthesis of phenolic acids, providing a sustainable platform for complex natural product production.
Researchers found that bilobalide, an active ingredient in Ginkgo biloba extract, protects the heart from ischemic injuries by preserving ATP generation and enhancing metabolic flux. The study suggests that bilobalide may provide a new herbal therapy for treating myocardial ischemia.
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Researchers discovered multiple levels of torpor in hummingbirds, including shallow and deep states, as well as a transition stage between normal sleep and torpor. This flexible control allows hummingbirds to conserve energy while minimizing potential costs, such as increased vulnerability to disease or predation.
Researchers at UNIGE found that fat can aid pancreatic beta cells in adapting to excess sugar levels. The study reveals a dynamic cycle of fat storage and mobilization allows cells to maintain near-normal insulin secretion. Regular physical activity may help give this beneficial cycle a chance to be active.
Researcher Jennifer Hurley is using in-vivo experimentation and big data analytics to identify environmental cues that tune the circadian clock's control over metabolism. Her study aims to find genes responsive to environmental signals, such as nutrients, to understand how environment affects sleep-wake cycle.
A team of researchers simulated the loss of physical activity during COVID19 lockdowns to study its effects on metabolism. They found that mice's energy sources shifted based on their diet composition after a sharp decline in exercise, leading to weight gain.
Researchers have discovered folate metabolism as a common mechanism underlying aging and lifespan extension across different species. The study found that altering folate metabolism increases lifespan in worms and mice by up to 30 percent, suggesting a potential new approach to improving human health during aging.
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Recent studies have highlighted the significant role of Shp2, a phosphatase protein, in governing signaling response amplitude and regulating cell differentiation and growth. Dysregulation of Shp2 has been linked to various types of leukemia, including acute myeloid, juvenile myelomonocytic, and B-cell acute lymphoblastic leukemia.
Galanin-like peptide (GALP) plays a key role in regulating feeding behavior and energy metabolism. Recent research has shown that GALP administration leads to decreased respiratory quotient, indicating accelerated lipid metabolism.
Researchers summarize vinegar's anti-bacterial, antioxidant, and weight loss capabilities due to organic acids, polyphenols, and acetic acid. The review also highlights potential anticancer activities of certain grain vinegars.
Researchers have identified widespread regulation of proteins involved in metabolism by the mitochondrial sirtuin, SIRT5. This study found that SIRT5 selectively removes specific sites of succinyl modifications in over 140 different proteins, leading to disruptions in metabolic pathways.