DNA Damage, n-3 Long-Chain PUFA Levels and Proteomic Profile in Brazilian Children and Adolescents

Fatty acids play a significant role in maintaining cellular and DNA protection and we previously found an inverse relationship between blood levels of eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA) and DNA damage. The aim of this study was to explore differences in proteomic profiles, fo...

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Published inNutrients Vol. 13; no. 8; p. 2483
Main Authors Barros, Tamiris Trevisan de, Venancio, Vinicius de Paula, Hernandes, Lívia Cristina, Antunes, Lusania Maria Greggi, Hillesheim, Elaine, Salomão, Roberta Garcia, Mathias, Mariana Giaretta, Coelho-Landell, Carolina Almeida, Toffano, Roseli Borges Donegá, Almada, Maria Olimpia Ribeiro do Vale, Camelo-Junior, José Simon, Moco, Sofia, Cominetti, Ornella, Ued, Fábio da Veiga, Kaput, Jim, Monteiro, Jacqueline Pontes
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LanguageEnglish
Published Basel MDPI AG 21.07.2021
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Abstract Fatty acids play a significant role in maintaining cellular and DNA protection and we previously found an inverse relationship between blood levels of eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA) and DNA damage. The aim of this study was to explore differences in proteomic profiles, for 117 pro-inflammatory proteins, in two previously defined groups of individuals with different DNA damage and EPA and DHA levels. Healthy children and adolescents (n = 140) aged 9 to 13 years old in an urban area of Brazil were divided by k-means cluster test into two clusters of DNA damage (tail intensity) using the comet assay (cluster 1 = 5.9% ± 1.2 and cluster 2 = 13.8% ± 3.1) in our previous study. The cluster with higher DNA damage and lower levels of DHA (6.2 ± 1.6 mg/dL; 5.4 ± 1.3 mg/dL, p = 0.003) and EPA (0.6 ± 0.2 mg/dL; 0.5 ± 0.1 mg/dL, p < 0.001) presented increased expression of the proteins CDK8–CCNC, PIK3CA–PIK3R1, KYNU, and PRKCB, which are involved in pro-inflammatory pathways. Our findings support the hypothesis that low levels of n-3 long-chain PUFA may have a less protective role against DNA damage through expression of pro-inflammatory proteins, such as CDK8–CCNC, PIK3CA–PIK3R1, KYNU, and PRKCB.
AbstractList Fatty acids play a significant role in maintaining cellular and DNA protection and we previously found an inverse relationship between blood levels of eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA) and DNA damage. The aim of this study was to explore differences in proteomic profiles, for 117 pro-inflammatory proteins, in two previously defined groups of individuals with different DNA damage and EPA and DHA levels. Healthy children and adolescents (n = 140) aged 9 to 13 years old in an urban area of Brazil were divided by k-means cluster test into two clusters of DNA damage (tail intensity) using the comet assay (cluster 1 = 5.9% ± 1.2 and cluster 2 = 13.8% ± 3.1) in our previous study. The cluster with higher DNA damage and lower levels of DHA (6.2 ± 1.6 mg/dL; 5.4 ± 1.3 mg/dL, p = 0.003) and EPA (0.6 ± 0.2 mg/dL; 0.5 ± 0.1 mg/dL, p < 0.001) presented increased expression of the proteins CDK8–CCNC, PIK3CA–PIK3R1, KYNU, and PRKCB, which are involved in pro-inflammatory pathways. Our findings support the hypothesis that low levels of n-3 long-chain PUFA may have a less protective role against DNA damage through expression of pro-inflammatory proteins, such as CDK8–CCNC, PIK3CA–PIK3R1, KYNU, and PRKCB.
Fatty acids play a significant role in maintaining cellular and DNA protection and we previously found an inverse relationship between blood levels of eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA) and DNA damage. The aim of this study was to explore differences in proteomic profiles, for 117 pro-inflammatory proteins, in two previously defined groups of individuals with different DNA damage and EPA and DHA levels. Healthy children and adolescents ( n = 140) aged 9 to 13 years old in an urban area of Brazil were divided by k-means cluster test into two clusters of DNA damage (tail intensity) using the comet assay (cluster 1 = 5.9% ± 1.2 and cluster 2 = 13.8% ± 3.1) in our previous study. The cluster with higher DNA damage and lower levels of DHA (6.2 ± 1.6 mg/dL; 5.4 ± 1.3 mg/dL, p = 0.003) and EPA (0.6 ± 0.2 mg/dL; 0.5 ± 0.1 mg/dL, p < 0.001) presented increased expression of the proteins CDK8–CCNC, PIK3CA–PIK3R1, KYNU, and PRKCB, which are involved in pro-inflammatory pathways. Our findings support the hypothesis that low levels of n-3 long-chain PUFA may have a less protective role against DNA damage through expression of pro-inflammatory proteins, such as CDK8–CCNC, PIK3CA–PIK3R1, KYNU, and PRKCB.
Audience Academic
Author Cominetti, Ornella
Toffano, Roseli Borges Donegá
Hillesheim, Elaine
Mathias, Mariana Giaretta
Venancio, Vinicius de Paula
Barros, Tamiris Trevisan de
Coelho-Landell, Carolina Almeida
Moco, Sofia
Antunes, Lusania Maria Greggi
Camelo-Junior, José Simon
Monteiro, Jacqueline Pontes
Almada, Maria Olimpia Ribeiro do Vale
Hernandes, Lívia Cristina
Ued, Fábio da Veiga
Salomão, Roberta Garcia
Kaput, Jim
AuthorAffiliation 2 School of Pharmaceutical Sciences of Ribeirao Preto, University of Sao Paulo, Sao Paulo 14049-900, Brazil; venancio.vinicius@alumni.usp.br (V.d.P.V.); lusania@fcfrp.usp.br (L.M.G.A.)
1 Department of Pediatrics, Medical School of Ribeirao Preto, University of Sao Paulo, Sao Paulo 14049-900, Brazil; elainehillesheim@usp.br (E.H.); rsalomao@usp.br (R.G.S.); marimathias@hotmail.com (M.G.M.); k_rolacoelho@hotmail.com (C.A.C.-L.); roselibdt@hotmail.com (R.B.D.T.); madovale@yahoo.com.br (M.O.R.d.V.A.); jscamelo@fmrp.usp.br (J.S.C.-J.); jacque@fmrp.usp.br (J.P.M.)
3 Nestlé Research, Société des Produits Nestlé SA, EPFL Innovation Park, CH1015 Lausanne, Switzerland; s.moco@vu.nl (S.M.); ornella.cominetti@rd.nestle.com (O.C.); jkaput@gmail.com (J.K.)
4 Department of Health Sciences, Medical School of Ribeirao Preto, University of Sao Paulo, Sao Paulo 14049-900, Brazil; uedfabio@gmail.com
AuthorAffiliation_xml – name: 4 Department of Health Sciences, Medical School of Ribeirao Preto, University of Sao Paulo, Sao Paulo 14049-900, Brazil; uedfabio@gmail.com
– name: 2 School of Pharmaceutical Sciences of Ribeirao Preto, University of Sao Paulo, Sao Paulo 14049-900, Brazil; venancio.vinicius@alumni.usp.br (V.d.P.V.); lusania@fcfrp.usp.br (L.M.G.A.)
– name: 1 Department of Pediatrics, Medical School of Ribeirao Preto, University of Sao Paulo, Sao Paulo 14049-900, Brazil; elainehillesheim@usp.br (E.H.); rsalomao@usp.br (R.G.S.); marimathias@hotmail.com (M.G.M.); k_rolacoelho@hotmail.com (C.A.C.-L.); roselibdt@hotmail.com (R.B.D.T.); madovale@yahoo.com.br (M.O.R.d.V.A.); jscamelo@fmrp.usp.br (J.S.C.-J.); jacque@fmrp.usp.br (J.P.M.)
– name: 3 Nestlé Research, Société des Produits Nestlé SA, EPFL Innovation Park, CH1015 Lausanne, Switzerland; s.moco@vu.nl (S.M.); ornella.cominetti@rd.nestle.com (O.C.); jkaput@gmail.com (J.K.)
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Current address: Vydiant, Folsom, CA 95630-2599, USA.
Current address: Department of Chemistry and Pharmaceutical Sciences, Amsterdam Institute for Molecular and Life Sciences, Vrije Universiteit Amsterdam, De Boelelaan 1108, 1081 HZ Amsterdam, The Netherlands.
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Snippet Fatty acids play a significant role in maintaining cellular and DNA protection and we previously found an inverse relationship between blood levels of...
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SubjectTerms Adolescents
Blood levels
Body mass index
Cell cycle
child
Children
Comet assay
Cyclin-dependent kinases
Damage detection
Deoxyribonucleic acid
DNA
DNA damage
Docosahexaenoic acid
Eicosapentaenoic acid
Ethylenediaminetetraacetic acid
Fatty acids
Gene expression
Inflammation
Nutrition
Omega-3 fatty acids
Physiology
Proteins
proteomic
Proteomics
Teenagers
Toxicity
Unsaturated fatty acids
Urban areas
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Title DNA Damage, n-3 Long-Chain PUFA Levels and Proteomic Profile in Brazilian Children and Adolescents
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https://pubmed.ncbi.nlm.nih.gov/PMC8401971
https://doaj.org/article/621a044e41254243bef3ca414c9a9aa8
Volume 13
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