Matches in SemOpenAlex for { <https://semopenalex.org/work/W4295993442> ?p ?o ?g. }
- W4295993442 endingPage "9205" @default.
- W4295993442 startingPage "9191" @default.
- W4295993442 abstract "Adipose tissue of ketotic dairy cows exhibits greater lipolytic rate and signs of inflammation, which further aggravate the metabolic disorder. In nonruminants, the endoplasmic reticulum (ER) is a key organelle coordinating metabolic adaptations and cellular functions; thus, disturbances known as ER stress lead to inflammation and contribute to metabolic disorders. Enhanced activity of diacylglycerol O-acyltransferase 1 (DGAT1) in murine adipocytes undergoing lipolysis alleviated ER stress and inflammation. The aim of the present study was to investigate the potential role of DGAT1 on ER stress and inflammatory response of bovine adipose tissue in vivo and in vitro. Adipose tissue and blood samples were collected from cows diagnosed as clinically ketotic (n = 15) or healthy (n = 15) following a veterinary evaluation based on clinical symptoms and serum concentrations of β-hydroxybutyrate, which were 4.05 (interquartile range = 0.46) and 0.52 mM (interquartile range = 0.14), respectively. Protein abundance of DGAT1 was greater in adipose tissue of ketotic cows. Among ER stress proteins measured, ratios of phosphorylated PKR-like ER kinase (p-PERK) to PERK and phosphorylated inositol-requiring enzyme 1 (p-IRE1) to IRE1, and protein abundance of cleaved ATF6 protein were greater in adipose tissue of ketotic cows. Furthermore, ratios of phosphorylated RELA subunit of NF-κB (p-RELA) to RELA and phosphorylated c-jun N-terminal kinase (p-JNK) to JNK were greater, whereas protein abundance of NF-κB inhibitor α (NFKBIA) was lower in adipose tissue of ketotic cows. In addition, mRNA abundance of proinflammatory cytokines including TNF and IL-6 was greater in adipose tissue of ketotic cows. To better address mechanistic aspects of these responses, primary bovine adipocytes isolated from the harvested adipose tissue of healthy cows were subjected to lipolysis-stimulating conditions via incubation with 1 μM epinephrine (EPI) for 2 h. In another experiment, adipocytes were cultured with DGAT1 overexpression adenovirus and DGAT1 small interfering RNA for 48 h, respectively, followed by EPI (1 μM) exposure for 2 h. Treatment with EPI led to greater ratios of p-PERK to PERK, p-IRE1 to IRE1, p-RELA to RELA, p-JNK to JNK, and cleaved ATF6 protein, whereas EPI stimulation inhibited protein abundance of NFKBIA. Furthermore, treatment with EPI upregulated the secretion of proinflammatory cytokines into culture medium, including TNF-α and IL-6. Overexpression of DGAT1 in EPI-treated adipocytes attenuated ER stress, the activation of NF-κB and JNK signaling pathways, and the secretion of inflammatory cytokines. In contrast, silencing DGAT1 further aggravated EPI-induced ER stress and inflammatory responses. Overall, these data indicated that activation of DGAT1 may act as an adaptive mechanism to dampen metabolic dysregulation in adipose tissue. As such, it contributes to relief from ER stress and inflammatory responses." @default.
- W4295993442 created "2022-09-16" @default.
- W4295993442 creator A5013267722 @default.
- W4295993442 creator A5015715832 @default.
- W4295993442 creator A5018696363 @default.
- W4295993442 creator A5051587922 @default.
- W4295993442 creator A5061785294 @default.
- W4295993442 creator A5061989562 @default.
- W4295993442 creator A5063835503 @default.
- W4295993442 creator A5071722754 @default.
- W4295993442 creator A5078504589 @default.
- W4295993442 creator A5090556916 @default.
- W4295993442 creator A5090731919 @default.
- W4295993442 date "2022-11-01" @default.
- W4295993442 modified "2023-10-12" @default.
- W4295993442 title "Effects of diacylglycerol O-acyltransferase 1 (DGAT1) on endoplasmic reticulum stress and inflammatory responses in adipose tissue of ketotic dairy cows" @default.
- W4295993442 cites W1973199574 @default.
- W4295993442 cites W1997238838 @default.
- W4295993442 cites W2004718580 @default.
- W4295993442 cites W2011185005 @default.
- W4295993442 cites W2011647937 @default.
- W4295993442 cites W2018523184 @default.
- W4295993442 cites W2027926561 @default.
- W4295993442 cites W2028984779 @default.
- W4295993442 cites W2036421323 @default.
- W4295993442 cites W2039481955 @default.
- W4295993442 cites W2040439727 @default.
- W4295993442 cites W2042354837 @default.
- W4295993442 cites W2051017625 @default.
- W4295993442 cites W2056422600 @default.
- W4295993442 cites W2065912402 @default.
- W4295993442 cites W2074163266 @default.
- W4295993442 cites W2075251005 @default.
- W4295993442 cites W2077138237 @default.
- W4295993442 cites W2080565381 @default.
- W4295993442 cites W2087751018 @default.
- W4295993442 cites W2088686978 @default.
- W4295993442 cites W2089198803 @default.
- W4295993442 cites W2090556647 @default.
- W4295993442 cites W2093871775 @default.
- W4295993442 cites W2105811126 @default.
- W4295993442 cites W2114365320 @default.
- W4295993442 cites W2138009056 @default.
- W4295993442 cites W2138485536 @default.
- W4295993442 cites W2140141804 @default.
- W4295993442 cites W2141895104 @default.
- W4295993442 cites W2148632242 @default.
- W4295993442 cites W2152377123 @default.
- W4295993442 cites W2168420558 @default.
- W4295993442 cites W2290240366 @default.
- W4295993442 cites W2303259337 @default.
- W4295993442 cites W2400614448 @default.
- W4295993442 cites W2403532883 @default.
- W4295993442 cites W2413899636 @default.
- W4295993442 cites W2574403377 @default.
- W4295993442 cites W2607775369 @default.
- W4295993442 cites W2741201317 @default.
- W4295993442 cites W275913698 @default.
- W4295993442 cites W2792871910 @default.
- W4295993442 cites W2922210279 @default.
- W4295993442 cites W2930124576 @default.
- W4295993442 cites W2932544732 @default.
- W4295993442 cites W2946043894 @default.
- W4295993442 cites W2947634269 @default.
- W4295993442 cites W2967278457 @default.
- W4295993442 cites W2999167062 @default.
- W4295993442 cites W3122180539 @default.
- W4295993442 cites W3127443982 @default.
- W4295993442 cites W3128445623 @default.
- W4295993442 cites W3135662211 @default.
- W4295993442 cites W3161665575 @default.
- W4295993442 cites W4211168698 @default.
- W4295993442 doi "https://doi.org/10.3168/jds.2022-21989" @default.
- W4295993442 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/36114053" @default.
- W4295993442 hasPublicationYear "2022" @default.
- W4295993442 type Work @default.
- W4295993442 citedByCount "3" @default.
- W4295993442 countsByYear W42959934422023 @default.
- W4295993442 crossrefType "journal-article" @default.
- W4295993442 hasAuthorship W4295993442A5013267722 @default.
- W4295993442 hasAuthorship W4295993442A5015715832 @default.
- W4295993442 hasAuthorship W4295993442A5018696363 @default.
- W4295993442 hasAuthorship W4295993442A5051587922 @default.
- W4295993442 hasAuthorship W4295993442A5061785294 @default.
- W4295993442 hasAuthorship W4295993442A5061989562 @default.
- W4295993442 hasAuthorship W4295993442A5063835503 @default.
- W4295993442 hasAuthorship W4295993442A5071722754 @default.
- W4295993442 hasAuthorship W4295993442A5078504589 @default.
- W4295993442 hasAuthorship W4295993442A5090556916 @default.
- W4295993442 hasAuthorship W4295993442A5090731919 @default.
- W4295993442 hasBestOaLocation W42959934421 @default.
- W4295993442 hasConcept C126322002 @default.
- W4295993442 hasConcept C134018914 @default.
- W4295993442 hasConcept C139447449 @default.
- W4295993442 hasConcept C140985366 @default.
- W4295993442 hasConcept C158617107 @default.
- W4295993442 hasConcept C164027704 @default.
- W4295993442 hasConcept C171089720 @default.