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The dataset of methylglyoxal activating p38 and p44/42 pathway in osteoclast

Diabetes mellitus (DM) is a kind of chronic metabolic disease that could be characterized by uncontrollable high blood glucose (hyperglycemia) over a prolonged period and diverse complications in various organs. These complications include activation of stress responses in bone such as oxidative str...

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Autores principales: Lee, Kwan Ming, Lee, Cheuk Yan, Zhang, Ge, Lyu, Aiping, Yue, Kevin Kin Man
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6811967/
https://www.ncbi.nlm.nih.gov/pubmed/31667263
http://dx.doi.org/10.1016/j.dib.2019.104500
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author Lee, Kwan Ming
Lee, Cheuk Yan
Zhang, Ge
Lyu, Aiping
Yue, Kevin Kin Man
author_facet Lee, Kwan Ming
Lee, Cheuk Yan
Zhang, Ge
Lyu, Aiping
Yue, Kevin Kin Man
author_sort Lee, Kwan Ming
collection PubMed
description Diabetes mellitus (DM) is a kind of chronic metabolic disease that could be characterized by uncontrollable high blood glucose (hyperglycemia) over a prolonged period and diverse complications in various organs. These complications include activation of stress responses in bone such as oxidative stress and inflammation, which have been implicated in various bone diseases, including osteoporosis. Non-enzymatic glycation of proteins form and accumulate in patients under hyperglycemia condition. Methylglyoxal (MG) is a reactive advanced glycation end-product precursor. Abnormal high concentration of MG was in serum of diabetic patients. It was proven that MG induces various stress responses. This indicates that it might possibly the key metabolite leading to diabetes-associated bone loss. In this data report, using cell models, the underlying mechanism of methylglyoxal on osteoclast that may lead to bone loss was investigated. In cell cultures, RAW264.7, Macrophages, was treated with methylglyoxal and gene expressions of osteoclast bone biomarkers were investigated. Furthermore, the inhibitions of p38 and p44/42 activities were employed to investigate the osteoclast biomarkers CTSK, OSCAR, and TRACP5 gene expressions. These data implied that MG activated the p38 and p44/42, which was reported to regulate proliferation and differentiation of osteoclast. However, the decreasing MAPK though siRNA knockdown did not change expression of those target markers, TRACP5, OSCAR, and CTSK, in mRNA level. The effects of MG to other osteoclast markers through p38 and p44/42 would be worth to be investigated. For more insight please see Methylglyoxal Activates Osteoclasts through JNK Pathway leading to Osteoporosis.
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spelling pubmed-68119672019-10-30 The dataset of methylglyoxal activating p38 and p44/42 pathway in osteoclast Lee, Kwan Ming Lee, Cheuk Yan Zhang, Ge Lyu, Aiping Yue, Kevin Kin Man Data Brief Biochemistry, Genetics and Molecular Biology Diabetes mellitus (DM) is a kind of chronic metabolic disease that could be characterized by uncontrollable high blood glucose (hyperglycemia) over a prolonged period and diverse complications in various organs. These complications include activation of stress responses in bone such as oxidative stress and inflammation, which have been implicated in various bone diseases, including osteoporosis. Non-enzymatic glycation of proteins form and accumulate in patients under hyperglycemia condition. Methylglyoxal (MG) is a reactive advanced glycation end-product precursor. Abnormal high concentration of MG was in serum of diabetic patients. It was proven that MG induces various stress responses. This indicates that it might possibly the key metabolite leading to diabetes-associated bone loss. In this data report, using cell models, the underlying mechanism of methylglyoxal on osteoclast that may lead to bone loss was investigated. In cell cultures, RAW264.7, Macrophages, was treated with methylglyoxal and gene expressions of osteoclast bone biomarkers were investigated. Furthermore, the inhibitions of p38 and p44/42 activities were employed to investigate the osteoclast biomarkers CTSK, OSCAR, and TRACP5 gene expressions. These data implied that MG activated the p38 and p44/42, which was reported to regulate proliferation and differentiation of osteoclast. However, the decreasing MAPK though siRNA knockdown did not change expression of those target markers, TRACP5, OSCAR, and CTSK, in mRNA level. The effects of MG to other osteoclast markers through p38 and p44/42 would be worth to be investigated. For more insight please see Methylglyoxal Activates Osteoclasts through JNK Pathway leading to Osteoporosis. Elsevier 2019-09-17 /pmc/articles/PMC6811967/ /pubmed/31667263 http://dx.doi.org/10.1016/j.dib.2019.104500 Text en © 2019 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Biochemistry, Genetics and Molecular Biology
Lee, Kwan Ming
Lee, Cheuk Yan
Zhang, Ge
Lyu, Aiping
Yue, Kevin Kin Man
The dataset of methylglyoxal activating p38 and p44/42 pathway in osteoclast
title The dataset of methylglyoxal activating p38 and p44/42 pathway in osteoclast
title_full The dataset of methylglyoxal activating p38 and p44/42 pathway in osteoclast
title_fullStr The dataset of methylglyoxal activating p38 and p44/42 pathway in osteoclast
title_full_unstemmed The dataset of methylglyoxal activating p38 and p44/42 pathway in osteoclast
title_short The dataset of methylglyoxal activating p38 and p44/42 pathway in osteoclast
title_sort dataset of methylglyoxal activating p38 and p44/42 pathway in osteoclast
topic Biochemistry, Genetics and Molecular Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6811967/
https://www.ncbi.nlm.nih.gov/pubmed/31667263
http://dx.doi.org/10.1016/j.dib.2019.104500
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