keyword
https://read.qxmd.com/read/38619281/rankl-signaling-drives-skeletal-muscle-into-the-oxidative-profile
#21
JOURNAL ARTICLE
Paulo Henrique Cavalcanti de Araújo, Maria Eduarda Ramos Cezine, Anderson Vulczak, Luiz Carlos Vieira, Flávia Sayuri Matsuo, Júlia Maranghetti Remoto, Audrei Dos Reis Santos, Elen Haruka Miyabara, Luciane Carla Alberici, Mariana Kiomy Osako
The bone-muscle unit refers to the reciprocal regulation between bone and muscle by mechanical interaction and tissue communication via soluble factors. The receptor activator of NF-κB ligand (RANKL) stimulation induces mitochondrial biogenesis and increases the oxidative capacity in osteoclasts and adipocytes. RANKL may bind to the membrane bound receptor activator of NF-κB (RANK) or to osteoprotegerin (OPG), a decoy receptor that inhibits RANK-RANKL activation. RANK is highly expressed in skeletal muscle, but the contribution of RANKL to healthy skeletal muscle fiber remains elusive...
April 15, 2024: Journal of Bone and Mineral Research
https://read.qxmd.com/read/38617541/dysregulated-ribosome-biogenesis-is-a-targetable-vulnerability-in-triple-negative-breast-cancer-mrps27-as-a-key-mediator-of-the-stemness-inhibitory-effect-of-lovastatin
#22
JOURNAL ARTICLE
Chanjuan Zheng, Hui Yao, Lu Lu, Hongqi Li, Lei Zhou, Xueyan He, Xi Xu, Hongzhuo Xia, Siyu Ding, Yiyuan Yang, Xinyu Wang, Muyao Wu, Lian Xue, Sisi Chen, Xiaojun Peng, Zhongyi Cheng, Yian Wang, Guangchun He, Shujun Fu, Evan T Keller, Suling Liu, Yi-Zhou Jiang, Xiyun Deng
Triple-negative breast cancer (TNBC) is the most aggressive subtype of breast cancer with limited effective therapeutic options readily available. We have previously demonstrated that lovastatin, an FDA-approved lipid-lowering drug, selectively inhibits the stemness properties of TNBC. However, the intracellular targets of lovastatin in TNBC remain largely unknown. Here, we unexpectedly uncovered ribosome biogenesis as the predominant pathway targeted by lovastatin in TNBC. Lovastatin induced the translocation of ribosome biogenesis-related proteins including nucleophosmin (NPM), nucleolar and coiled-body phosphoprotein 1 (NOLC1), and the ribosomal protein RPL3...
2024: International Journal of Biological Sciences
https://read.qxmd.com/read/38616758/effects-of-dietary-restriction-on-pgc-1%C3%AE-regulation-in-the-development-of-age-associated-diseases
#23
JOURNAL ARTICLE
Shefilyn Widjaja, Radiana Dhewayani Antarianto, Novi Silvia Hardiany
Ageing is the most significant risk factor for a number of non-communicable diseases, manifesting as cognitive, metabolic, and cardiovascular diseases. Although multifactorial, mitochondrial dysfunction and oxidative stress have been proposed to be the driving forces of ageing. Peroxisome proliferator-activated receptor γ coactivator α (PGC-1α) is a transcriptional coactivator central to various metabolic functions, of which mitochondrial biogenesis is the most prominent function. Inducible by various stimuli, including nutrient limitations, PGC-1α is a molecule of interest in the maintenance of mitochondrial function and, therefore, the prevention of degenerative diseases...
April 9, 2024: Current Aging Science
https://read.qxmd.com/read/38615917/isobavachin-attenuates-osteoclastogenesis-and-periodontitis-induced-bone-loss-by-inhibiting-cellular-iron-accumulation-and-mitochondrial-biogenesis
#24
JOURNAL ARTICLE
Ting Li, Yangge Du, Hantao Yao, Boxuan Zhao, Zijun Wang, Rourong Chen, Yaoting Ji, Minquan Du
As bone-resorbing cells rich in mitochondria, osteoclasts require high iron uptake to promote mitochondrial biogenesis and maintain a high-energy metabolic state for active bone resorption. Given that abnormal osteoclast formation and activation leads to imbalanced bone remodeling and osteolytic bone loss, osteoclasts may be crucial targets for treating osteolytic diseases such as periodontitis. Isobavachin (IBA), a natural flavonoid compound, has been confirmed to be an inhibitor of receptor activator of nuclear factor κB ligand (RANKL)-induced osteoclast differentiation from bone marrow-derived macrophages (BMMs)...
April 12, 2024: Biochemical Pharmacology
https://read.qxmd.com/read/38614374/sars-cov-2-mitochondrial-metabolic-and-epigenomic-reprogramming-in-covid-19
#25
JOURNAL ARTICLE
Joseph W Guarnieri, Jeffrey A Haltom, Yentli E Soto Albrecht, Timothy Lie, Arnold Z Olali, Gabrielle A Widjaja, Sujata S Ranshing, Alessia Angelin, Deborah Murdock, Douglas C Wallace
To determine the effects of SARS-CoV-2 infection on cellular metabolism, we conducted an exhaustive survey of the cellular metabolic pathways modulated by SARS-CoV-2 infection and confirmed their importance for SARS-CoV-2 propagation by cataloging the effects of specific pathway inhibitors. This revealed that SARS-CoV-2 strongly inhibits mitochondrial oxidative phosphorylation (OXPHOS) resulting in increased mitochondrial reactive oxygen species (mROS) production. The elevated mROS stabilizes HIF-1α which redirects carbon molecules from mitochondrial oxidation through glycolysis and the pentose phosphate pathway (PPP) to provide substrates for viral biogenesis...
April 11, 2024: Pharmacological Research: the Official Journal of the Italian Pharmacological Society
https://read.qxmd.com/read/38612863/the-effect-of-cold-water-swimming-on-energy-metabolism-dynamics-and-mitochondrial-biogenesis-in-the-muscles-of-aging-rats
#26
JOURNAL ARTICLE
Mateusz Bosiacki, Maciej Tarnowski, Kamila Misiakiewicz-Has, Anna Lubkowska
Our study aimed to explore the potential positive effects of cold water exercise on mitochondrial biogenesis and muscle energy metabolism in aging rats. The study involved 32 male and 32 female rats aged 15 months, randomly assigned to control sedentary animals, animals training in cold water at 5 ± 2 °C, or animals training in water at thermal comfort temperature (36 ± 2 °C). The rats underwent swimming training for nine weeks, gradually increasing the duration of the sessions from 2 min to 4 min per day, five days a week...
April 5, 2024: International Journal of Molecular Sciences
https://read.qxmd.com/read/38611847/hemp-seed-oil-inhibits-the-adipogenicity-of-the-differentiation-induced-human-mesenchymal-stem-cells-through-suppressing-the-cannabinoid-type-1-cb1
#27
JOURNAL ARTICLE
Albatul S Almousa, Pandurangan Subash-Babu, Ibrahim O Alanazi, Ali A Alshatwi, Huda Alkhalaf, Eman Bahattab, Atheer Alsiyah, Mohammad Alzahrani
Central and peripheral mechanisms of the endocannabinoid system (ECS) favor energy intake and storage. The ECS, especially cannabidiol (CBD) receptors, controls adipocyte differentiation (hyperplasia) and lipid accumulation (hypertrophy) in adipose tissue. In white adipose tissue, cannabidiol receptor 1 (CB1) stimulation increases lipogenesis and inhibits lipolysis; in brown adipose tissue, it decreases mitochondrial thermogenesis and biogenesis. This study compared the availability of phytocannabinoids [CBD and Δ9-tetrahydrocannabinol (THC)] and polyunsaturated fatty acids [omega 3 (ω3) and omega 6 (ω6)] in different hemp seed oils (HSO)...
March 31, 2024: Molecules: a Journal of Synthetic Chemistry and Natural Product Chemistry
https://read.qxmd.com/read/38611372/kaempferol-improves-exercise-performance-by-regulating-glucose-uptake-mitochondrial-biogenesis-and-protein-synthesis-via-pi3k-akt-and-mapk-signaling-pathways
#28
JOURNAL ARTICLE
Xiaoning Ji, Chaozheng Zhang, Jing Yang, Yaru Tian, Lijuan You, Hui Yang, Yongning Li, Haibo Liu, Deng Pan, Zhaoping Liu
Kaempferol is a natural flavonoid with reported bioactivities found in many fruits, vegetables, and medicinal herbs. However, its effects on exercise performance and muscle metabolism remain inconclusive. The present study investigated kaempferol's effects on improving exercise performance and potential mechanisms in vivo and in vitro. The grip strength, exhaustive running time, and distance of mice were increased in the high-dose kaempferol group ( p < 0.01). Also, kaempferol reduced fatigue-related biochemical markers and increased the activities of superoxide dismutase (SOD) and glutathione peroxidase (GSH-Px) related to antioxidant capacity...
March 30, 2024: Foods (Basel, Switzerland)
https://read.qxmd.com/read/38609039/role-of-mitochondria-in-pathogenesis-and-therapy-of-renal-fibrosis
#29
REVIEW
Xiaodong Zhao, Yunkuo Li, Jinyu Yu, Haolin Teng, Shouwang Wu, Yishu Wang, Honglan Zhou, Faping Li
Renal fibrosis, specifically tubulointerstitial fibrosis, represents the predominant pathological consequence observed in the context of progressive chronic kidney conditions. The pathogenesis of renal fibrosis encompasses a multifaceted interplay of mechanisms, including but not limited to interstitial fibroblast proliferation, activation, augmented production of extracellular matrix (ECM) components, and impaired ECM degradation. Notably, mitochondria, the intracellular organelles responsible for orchestrating biological oxidation processes in mammalian cells, assume a pivotal role within this intricate milieu...
April 10, 2024: Metabolism: Clinical and Experimental
https://read.qxmd.com/read/38601953/examining-the-biological-impacts-of-parent-child-relationship-dynamics-on-preschool-aged-children-who-have-experienced-adversity
#30
JOURNAL ARTICLE
Jesse L Coe, Teresa Daniels, Lindsay Huffhines, Ronald Seifer, Carmen J Marsit, Hung-Teh Kao, Barbara Porton, Stephanie H Parade, Audrey R Tyrka
Parent-child relationship dynamics have been shown to predict socioemotional and behavioral outcomes for children, but little is known about how they may affect biological development. The aim of this study was to test if observational assessments of parent-child relationship dynamics (cohesion, enmeshment, and disengagement) were associated with three biological indices of early life adversity and downstream health risk: (1) methylation of the glucocorticoid receptor gene ( NR3C1 ), (2) telomere attrition, and (3) mitochondrial biogenesis, indexed by mitochondrial DNA copy number (mtDNAcn), all of which were measured in children's saliva...
February 2024: Developmental Psychobiology
https://read.qxmd.com/read/38599881/nad-p-h-quinone-oxidoreductase-1-induces-complicated-effects-on-mitochondrial-dysfunction-and-ferroptosis-in-an-expression-level-dependent-manner
#31
JOURNAL ARTICLE
Jaewang Lee, Dong-Hoon Hyun
NAD(P)H-quinone oxidoreductase 1 (NQO1) is an essential redox enzyme responsible for redox balance and energy metabolism. Despite of its importance, the brain contains high capacity of polyunsaturated fatty acids and maintains low levels of NQO1 expression. In this study, we examined how levels of NQO1 expression affects cell survival in response to toxic insults causing mitochondrial dysfunction and ferroptosis, and whether NQO1 has a potential as a biomarker in different stressed conditions. Following treatment with rotenone, overexpressed NQO1 in SH-SY5Y cells improved cell survival by reducing mitochondrial reductive stress via increased NAD+ supply without mitochondrial biogenesis...
April 10, 2024: Bioscience Trends
https://read.qxmd.com/read/38599301/role-of-rmd9p-in-3-end-processing-of-mitochondrial-15s-rrna-in-saccharomyces-cerevisiae
#32
JOURNAL ARTICLE
Jitendra Singh, Sudhir Singh, Elhassan Ali Fathi Emam, Umesh Varshney
Ribosome biogenesis, involving processing/assembly of rRNAs and r-proteins is a vital process. In Saccharomyces cerevisiae mitochondria, ribosomal small subunit comprises 15S rRNA (15S). While the 15S 5'-end processing uses Ccm1p and Pet127p, the mechanisms of the 3'-end processing remain unclear. We reveal involvement of Rmd9p in safeguarding/processing 15S 3'-end. Rmd9p deficiency results in a cleavage at a position 183 nucleotides upstream of 15S 3'-end, and in the loss of the 3'-minor domain. Rmd9p binds the 3'-end spacer sequence in 15S precursor, and a genetic interaction between rmd9 and dss1 indicates that Rmd9p regulates/limits mtEXO activity during the 3'-end spacer processing...
April 8, 2024: Mitochondrion
https://read.qxmd.com/read/38594940/replication-and-transcription-of-human-mitochondrial-dna
#33
REVIEW
Maria Falkenberg, Nils-Göran Larsson, Claes M Gustafsson
Mammalian mitochondrial DNA (mtDNA) is replicated and transcribed by phage-like DNA and RNA polymerases, and our understanding of these processes has progressed substantially over the last several decades. Molecular mechanisms have been elucidated by biochemistry and structural biology and essential in vivo roles established by cell biology and mouse genetics. Single molecules of mtDNA are packaged by mitochondrial transcription factor A into mitochondrial nucleoids, and their level of compaction influences the initiation of both replication and transcription...
April 9, 2024: Annual Review of Biochemistry
https://read.qxmd.com/read/38592921/dead-box-rna-helicase-family-in-physic-nut-jatropha-curcas-l-structural-characterization-and-response-to-salinity
#34
JOURNAL ARTICLE
Rahisa Helena da Silva, Manassés Daniel da Silva, José Ribamar Costa Ferreira-Neto, Bruna de Brito Souza, Francielly Negreiros de Araújo, Elvia Jéssica da Silva Oliveira, Ana Maria Benko-Iseppon, Antonio Félix da Costa, Éderson Akio Kido
Helicases, motor proteins present in both prokaryotes and eukaryotes, play a direct role in various steps of RNA metabolism. Specifically, SF2 RNA helicases, a subset of the DEAD-box family, are essential players in plant developmental processes and responses to biotic and abiotic stresses. Despite this, information on this family in the physic nut ( Jatropha curcas L.) remains limited, spanning from structural patterns to stress responses. We identified 79 genes encoding DEAD-box RNA helicases ( Jc DHX) in the J...
March 21, 2024: Plants (Basel, Switzerland)
https://read.qxmd.com/read/38586887/%C3%A3-cell-selective-regulation-of-gene-expression-by-nitric-oxide
#35
JOURNAL ARTICLE
Aaron Naatz, Chay Teng Yeo, Neil Hogg, John A Corbett
Nitric oxide is produced at low micromolar levels following the induction of inducible nitric oxide synthase (iNOS) and is responsible for mediating the inhibitory actions of cytokines on glucose-stimulated insulin secretion by islets of Langerhans. It is through the inhibition of mitochondrial oxidative metabolism, specifically aconitase and complex 4 of the electron transport chain, that nitric oxide inhibits insulin secretion. Nitric oxide also attenuates protein synthesis, induces DNA damage, activates DNA repair pathways, and stimulates stress responses (unfolded protein and heat shock) in β-cells...
April 8, 2024: American Journal of Physiology. Regulatory, Integrative and Comparative Physiology
https://read.qxmd.com/read/38586825/the-effects-of-different-durations-of-exposure-to-hypomagnetic-field-on-the-number-of-active-mitochondria-and-ros-levels-in-the-mouse-hippocampus
#36
JOURNAL ARTICLE
Lanxiang Tian, Jie Ren, Yukai Luo
Reactive oxygen species (ROS) are one of the potential molecules in response to a hypomagnetic field (HMF), and exposure to an HMF for eight weeks led to an increase in ROS levels in the whole hippocampus area in mice. ROS are mainly derived from the byproducts of mitochondrial metabolism. However, previous in vivo studies mostly focus on the influence of one time point of HMF exposure on the mouse hippocampus and lack comparative studies on the effects of different durations of HMF exposure on the mouse hippocampus...
July 2024: Biochemistry and Biophysics Reports
https://read.qxmd.com/read/38586339/curcumin-simultaneously-improves-mitochondrial-dynamics-and-myocardial-cell-bioenergy-after-sepsis-via-the-sirt1-drp1-pgc-1%C3%AE-pathway
#37
JOURNAL ARTICLE
Dongyao Hou, Haitang Liao, Shuai Hao, Ruixue Liu, He Huang, Chenyang Duan
Septic cardiomyopathy (SCM) is associated with an imbalance in mitochondrial quality and high mortality rates, with no effective treatment developed to date. Curcumin provides antioxidant, anti-inflammatory, cardiovascular, and mitochondrial protection. However, curcumin has not been confirmed to improve cardiac dysfunction in sepsis. We hypothesized that curcumin can reduce abnormal inflammatory responses by improving mitochondrial function as a novel mechanism to improve SCM. To explore this hypothesis, we used an in vivo male C57BL/6 mouse sepsis model and an in vitro model of lipopolysaccharide-stimulated HL-1 cells...
April 15, 2024: Heliyon
https://read.qxmd.com/read/38585863/impaired-ampk-control-of-alveolar-epithelial-cell-metabolism-promotes-pulmonary-fibrosis
#38
Luis R Rodriguez, Konstantinos-Dionysios Alysandratos, Jeremy Katzen, Aditi Murthy, Willy Roque Barboza, Yaniv Tomer, Rebeca Acin-Perez, Anton Petcherski, Kasey Minakin, Paige Carson, Swati Iyer, Katrina Chavez, Charlotte H Cooper, Apoorva Babu, Aaron I Weiner, Andrew E Vaughan, Zoltan Arany, Orian S Shirihai, Darrell N Kotton, Michael F Beers
Alveolar epithelial type II (AT2) cell dysfunction is implicated in the pathogenesis of familial and sporadic idiopathic pulmonary fibrosis (IPF). We previously described that expression of an AT2 cell exclusive disease-associated protein isoform (SP-CI73T) in murine and patient-specific induced pluripotent stem cell (iPSC)-derived AT2 cells leads to a block in late macroautophagy and promotes time-dependent mitochondrial impairments; however, how a metabolically dysfunctional AT2 cell results in fibrosis remains elusive...
March 28, 2024: bioRxiv
https://read.qxmd.com/read/38585467/potential-applications-of-mitochondrial-therapy-with-a-focus-on-parkinson-s-disease-and-mitochondrial-transplantation
#39
REVIEW
Pranay Wal, Ankita Wal, Himangi Vig, Danish Mahmood, Mohd Masih Uzzaman Khan
PURPOSE: Both aging and neurodegenerative illnesses are thought to be influenced by mitochondrial malfunction and free radical formation. Deformities of the energy metabolism, mitochondrial genome polymorphisms, nuclear DNA genetic abnormalities associated with mitochondria, modifications of mitochondrial fusion or fission, variations in shape and size, variations in transit, modified mobility of mitochondria, transcription defects, and the emergence of misfolded proteins associated with mitochondria are all linked to Parkinson's disease...
March 2024: Advanced Pharmaceutical Bulletin
https://read.qxmd.com/read/38585282/mechanical-regulation-of-mitochondrial-morphodynamics-in-cancer-cells-by-extracellular-microenvironment
#40
JOURNAL ARTICLE
Mariia Lunova, Milan Jirsa, Alexandr Dejneka, Gareth John Sullivan, Oleg Lunov
Recently, it has been recognized that physical abnormalities (e.g. elevated solid stress, elevated interstitial fluid pressure, increased stiffness) are associated with tumor progression and development. Additionally, these mechanical forces originating from tumor cell environment through mechanotransduction pathways can affect metabolism. On the other hand, mitochondria are well-known as bioenergetic, biosynthetic, and signaling organelles crucial for sensing stress and facilitating cellular adaptation to the environment and physical stimuli...
June 2024: Biomater Biosyst
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