2022, Número 2
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MEDICC Review 2022; 24 (2)
Genome-Wide mRNA Expression Analysis of Acute Psychological Stress Responses
Logan JG, Yun S, Teachman BA, Bao Y, Farber E, Farber CR
Idioma: Ingles.
Referencias bibliográficas: 65
Paginas: 35-42
Archivo PDF: 471.48 Kb.
RESUMEN
Sin resumen.
REFERENCIAS (EN ESTE ARTÍCULO)
Cohen S, Janicki-Deverts D, Miller GE. Psychologicalstress and disease. JAMA. 2007Oct;298(14):1685–7. PMID: 17925521.
Duric V, Clayton S, Leong ML, Yuan LL. Comorbidityfactors and brain mechanisms linkingchronic stress and systemic illness. Neural Plast.2016;2016:5460732. PMID: 26977323.
Iwata M, Ota KT, Duman RS. The infl ammasome:pathways linking psychological stress, depression,and systemic illnesses. Brain Behav Immun.2013 Jul;31:105–14. PMCID: PMC4426992.
Sillivan SE, Jones ME, Jamieson S, RumbaughG, Miller CA. Bioinformatic analysis of longlastingtranscriptional and translational changesin the basolateral amygdala following acutestress. PLoS One [Internet]. 2019 Jan 10 [cited2021 Dec 10];14(1):e0209846. PMID: 30629705.Available at: https://journals.plos.org/plosone/article?id=10.1371/journal.pone.0209846
Garner JP. The signifi cance of meaning: whydo over 90% of behavioral neuroscience resultsfail to translate to humans, and what can wedo to fi x it? ILAR J. 2014;55(3):438–56. PMID:25541546.
McInnis CM, Wang D, Gianferante D, HanlinL, Chen X, Thoma MV, et al. Responseand habituation of pro- and anti-infl ammatorygene expression to repeated acute stress.Brain Behav Immun. 2015 May;46:237–248.PMID: 25683696.
Huang CJ, Stewart JK, Franco RL, Evans RK,Lee ZP, Cruz TD, et al. LPS-stimulated tumornecrosis factor-alpha and interleukin-6 mRNAand cytokine responses following acute psychologicalstress. Psychoneuroendocrinology. 2011Nov;36(10):1553–61. PMID: 21600698.
Kuebler U, Zuccarella-Hackl C, Arpagaus A,Wolf JM, Farahmand F, von Känel R, et al.Stress-induced modulation of NF-κB activation,infl ammation-associated gene expression,and cytokine levels in blood of healthy men.Brain Behav Immun. 2015 May 1;46:87–95.PMID: 25557189.
Slavish DC, Szabo YZ. The eff ect of acute stresson salivary markers of infl ammation: a systematicreview protocol. Syst Rev. 2019 May 2;8(1):108.https://doi.org/10.1186/s13643-019-1026-4.PMID: 31046830; PMCID: PMC6498465.
Xiang L, Del Ben KS, Rehm KE, Marshall GD Jr.Eff ects of acute stress-induced immunomodulationon TH1/TH2 cytokine and catecholaminereceptor expression in human peripheral bloodcells. Neuropsychobiology. 2012;65(1):12–9.PMID: 22094268.
Zaba M, Kirmeier T, Ionescu IA, Wollweber B,Buell DR, Gall-Kleebach DJ, et al. Identifi cationand characterization of HPA-axis reactivity endophenotypesin a cohort of female PTSD patients.Psychoneuroendocrinology. 2015 May;55:102–15. PMID: 25745955.
Redwine L, Snow S, Mills P, Irwin M. Acute psychologicalstress: eff ects on chemotaxis andcellular adhesion molecule expression. PsychosomMed. 2003 Jul–Aug;65(4):598–603. PMID:12883110.
Breen MS, Beliakova-Bethell N, Mujica-ParodiLR, Carlson JM, Ensign WY, Woelk CH, et al.Acute psychological stress induces short-termvariable immune response. Brain Behav Immun.2016 Mar;53:172–82. PMID: 26476140.
Nowotny B, Cavka M, Herder C, Löffl er H,Poschen U, Joksimovic L, et al. Eff ects of acutepsychological stress on glucose metabolism andsubclinical infl ammation in patients with posttraumaticstress disorder. Horm Metab Res. 2010Sep;42(10):746–53. PMID: 20665427.
Schwaiger M, Grinberg M, Moser D, Zang JCS,Heinrichs M, Hengstler JG, et al. Altered stressinducedregulation of genes in monocytes inadults with a history of childhood adversity. Neuropsychopharmacology.2016 Sep;41(10):2530–40. PMCID: PMC4987852.
Nater UM, Whistler T, Lonergan W, Mletzko T,Vernon SD, Heim C. Impact of acute psychosocialstress on peripheral blood gene expressionpathways in healthy men. Biol Psychol. 2009Oct;82(2):125–32. PMCID: PMC7116965.
Birkett MA. The Trier Social Stress Test protocolfor inducing psychological stress. J Vis Exp. 2011Oct 19;(56). PMCID: PMC3227197.
Het S, Rohleder N, Schoofs D, Kirschbaum C,Wolf OT. Neuroendocrine and psychometric evaluationof a placebo version of the “Trier SocialStress Test.” Psychoneuroendocrinology. 2009Aug;34(7):1075–86. PMID: 19307062.
Logan JG, Teachman BA, Liu X, Farber CR, LiuZ, Annex BH. Acute psychological stress, autonomicfunction, and arterial stiff ness amongwomen. Int J Psychophysiol. 2020 Sep;155:219–26. PMID: 32619458.
Tanner BA. Validity of global physical and emotionalSUDS. Appl Psychophysiol Biofeedback.2012 Mar;37(1):31–4. PMID: 22038278.
Spielberger CD, Gorsuch RL, Lushene RE, VaggPR, Jacobs GA, editors. Manual for the State-Trait Anxiety Inventory. California: ConsultingPsychologists Press; 1983 Jan 1.
Spielberger CD, Vagg PR. Psychometric propertiesof the STAI: a reply to Ramanaiah, Franzen,and Schill. J Pers Assess. 1984 Feb;48(1):95–7.PMID: 6707862.
Maxwell MH, Waks AU, Schroth PC, KaramM, Dornfeld LP. Error in blood-pressure measurementdue to incorrect cuff size in obesepatients. Lancet. 1982 Jul 3;2(8288):33–6. PMID:6123760.
van der Valk ES, Savas M, van Rossum EFC.Stress and obesity: are there more susceptibleindividuals? Curr Obes Rep. 2018 Jun;7(2):193–203. PMID: 29663153.
Laurent S, Cockcroft J, Van Bortel L, BoutouyrieP, Giannattasio C, Hayoz D, et al. Expert consensusdocument on arterial stiff ness: methodologicalissues and clinical applications. Eur Heart J.2006 Nov;27(21):2588–605. PMID: 17000623.
Berntson GG, Bigger JT Jr, Eckberg DL,Grossman P, Kaufmann PG, Malik M, et al.Heart rate variability: origins, methods, andinterpretive caveats. Psychophysiology. 1997Nov;34(6):623–48. PMID: 9401419.
Dickerson SS, Kemeny ME. Acute stressors andcortisol responses: a theoretical integration andsynthesis of laboratory research. Psychol Bull.2004 May;130(3):355–91. PMID: 15122924.
Kudielka BM, Buske-Kirschbaum A, HellhammerDH, Kirschbaum C. HPA axis responses tolaboratory psychosocial stress in healthy elderlyadults, younger adults, and children: impact ofage and gender. Psychoneuroendocrinology.2004 Jan;29(1):83–98. PMID: 14575731.
Brody S, Preut R, Schommer K, SchürmeyerTH. A randomized controlled trial of high doseascorbic acid for reduction of blood pressure,cortisol, and subjective responses to psychologicalstress. Psychopharmacology (Berl). 2002Jan;159(3):319–24. PMID: 11862365.
Juster RP, Perna A, Marin MF, Sindi S, LupienSJ. Timing is everything: anticipatory stressdynamics among cortisol and blood pressurereactivity and recovery in healthy adults. Stress.2012 Nov;15(6):569–77. PMID: 22296506.
Polheber JP, Matchock RL. The presence of adog attenuates cortisol and heart rate in the TrierSocial Stress Test compared to human friends.J Behav Med. 2014 Oct;37(5):860–7. PMID:24170391.
Martin M. Cutadapt removes adapter sequencesfrom high-throughput sequencing reads. EMBnet[Internet]. 2011 May [cited 2021 Dec 10];17(1):10–2. https://doi.org/10.14806/ej.17.1.200.
DeLuca DS, Levin JZ, Sivachenko A, FennellT, Nazaire MD, Williams C, et al. RNA-SeQC:RNA-seq metrics for quality control and processoptimization. Bioinformatics. 2012 Jun1;28(11):1530–2. https://doi.org/10.1093/bioinformatics/bts196
Dobin A, Davis CA, Schlesinger F, Drenkow J,Zaleski C, Jha S, et al. STAR: ultrafast universalRNA-seq aligner. Bioinformatics. 2013 Jan1;29(1):15–21. https://doi.org/10.1093/bioinformatics/bts635
Anders S, Pyl PT, Huber W. HTSeq--a Pythonframework to work with high-throughput sequencingdata. Bioinformatics. 2015 Jan 15;31(2):166–9.https://doi.org/10.1093/bioinformatics/btu638
Love MI, Huber W, Anders S. Moderatedestimation of fold change and dispersion forRNA-seq data with DESeq2. Genome Biol.2014;15(12):550. https://doi.org/10.1186/s13059-014-0550-8
Benjamini Y, Hochberg Y. Controlling the falsediscovery rate: a practical and powerful approachto multiple testing. J Royal Statistical Soc SeriesB (Methodological). 1995;57(1):289–300. DOI:https://doi.org/10.1111/j.2517-6161.1995.tb02031.x
Liu B, Shao Y, Fu R. Current research status ofHLA in immune-related diseases. Immun Infl ammDis. 2021 Jun;9(2):340–50. PMID: 33657268.Epub 2021 Mar 3. https://doi.org/10.1002/iid3.416
Beermann J, Piccoli MT, Viereck J, Thum T.Non-coding RNAs in development and disease:background, mechanisms, and therapeuticapproaches. Physiol Rev. 2016 Oct;96(4):1297–325. PMID: 27535639. https://doi.org/10.1152/physrev.00041.2015
Zou Y, Chen B. Long non-coding RNA HCP5in cancer. Clin Chim Acta. 2021 Jan;512:33–9.PMID: 33245911.
Yin D, Lu X. Silencing of long non-coding RNAHCP5 inhibits proliferation, invasion, migration,and promotes apoptosis via regulation ofmiR-299-3p/SMAD5 axis in gastric cancer cells.Bioengineered. 2021 Dec;12(1):225–39. PMID:33371778.
Wang K, Yu X, Tao B, Qu J. Downregulation oflncRNA HCP5 has inhibitory eff ects on gastriccancer cells by regulating DDX21 expression.Cytotechnology [Internet]. 2021 Feb [cited 2021Dec 15];73(1):1–11. PMCID: PMC7817730. Availableat: https://link.springer.com/article/10.1007/s10616-020-00429-0
Liu YD, Li Y, Feng SX, Ye DS, Chen X, Zhou XY,et al. Long noncoding RNAs: Potential regulatorsinvolved in the pathogenesis of polycysticovary syndrome. Endocrinology. 2017 Nov1;158(11):3890–9. PMID: 28938484.
Kochan G, Escors D, Breckpot K, Guerrero-SetasD. Role of non-classical MHC class I moleculesin cancer immunosuppression. Oncoimmunology[Internet]. 2013 Nov 1 [cited 2021 Dec15];2(11):e26491. PMID: 24482746. Availableat: https://www.tandfonline.com/doi/abs/10.4161/onci.26491
Harada A, Ishigami S, Kijima Y, Nakajo A, ArigamiT, Kurahara H, et al. Clinical implication of humanleukocyte antigen (HLA)-F expression in breastcancer. Pathol Int [Internet]. 2015 Nov [cited 2021Dec 15];65(11):569–74. PMID: 26332651. Availableat: https://onlinelibrary.wiley.com/doi/10.1111/pin.12343
Huang Y, Sun H, Ma X, Zeng Y, Pan Y, Yu D, etal. HLA-F-AS1/miR-330-3p/PFN1 axis promotescolorectal cancer progression. Life Sci. 2020 Aug 1;254:117180. PMID: 31863778. Epub 2019 Dec18.
Koepsell H, Lips K, Volk C. Polyspecifi c organiccation transporters: structure, function, physiologicalroles, and biopharmaceutical implications.Pharm Res. 2007 Jul;24(7):1227–51.PMID: 17473959.
Wu Y, Hurren R, MacLean N, Gronda M, JitkovaY, Sukhai MA, et al. Carnitine transporter CT2(SLC22A16) is over-expressed in acute myeloidleukemia (AML) and target knockdown reducesgrowth and viability of AML cells. Apoptosis. 2015Aug;20(8):1099–108. PMID: 25998464.
Zhang JZ, Wu ZH, Cheng Q. Screening andidentifi cation of key biomarkers in nasopharyngealcarcinoma. Medicine (Baltimore). 2019Nov;98(48):e17997. PMID: 31770211.
Zhao W, Wang Y, Yue X. SLC22A16 upregulationis an independent unfavorable prognosticindicator in gastric cancer. Future Oncol. 2018Sep;14(21):2139–48. PMID: 29698084.
Wu Q, Yang X, Zhang Y, Zhang L, Feng L. Chronicmild stress accelerates the progression of Parkinson’sdisease in A53T α-synuclein transgenicmice. Exp Neurol. 2016 Nov;285(Pt A):61–71.PMID: 27637804.
Patel D, Bordoni B. Physiology, Synuclein. Stat-Pearls. 2020. PMID: 31985951.
Villar-Piqué A, Lopes da Fonseca T, Outeiro TF.Structure, function and toxicity of alpha-synuclein:the Bermuda triangle in synucleinopathies.J Neurochem. 2016 Oct;139 Suppl 1:240–55.PMID: 26190401.
Chang CW, Yang SY, Yang CC, Chang CW, WuYR. Plasma and serum alpha-synuclein as a biomarkerof diagnosis in patients with Parkinson’sdisease. Front Neurol [Internet]. 2020 Jan 21[cited 2021 Dec 15];10:1388. PMID: 32038461.Available at: https://www.frontiersin.org/articles/10.3389/fneur.2019.01388/full
Supuran CT. Structure and function of carbonicanhydrases. Biochem J. 2016 Jul15:473(14):2023–32. PMID: 27407171.
Liu Z, Bai Y, Xie F, Miao F, Du F. Comprehensiveanalysis for identifying diagnostic and prognosticbiomarkers in colon adenocarcinoma. DNA CellBiol. 2020 Apr;39(4):599–614. PMID: 32031891.Epub 2020 Feb 7.
Leite GGF, Scicluna BP, van der Poll T, SalomãoR. Genetic signature related to heme-hemoglobinmetabolism pathway in sepsis secondary to pneumonia.NPJ Syst Biol Appl [Internet]. 2019 Aug 1 [cited2021 Dec 17];5:26. PMID: 31396396. Available at:https://www.nature.com/articles/s41540-019-0105-4
Hynes-Smith RW, Swenson SA, Vahle H, WittorfKJ, Caplan M, Amador C, et al. Loss of FBXO9enhances proteasome activity and promotesaggressiveness in acute myeloid leukemia.Cancers (Basel) [Internet]. 2019 Nov 3 [cited2021 Dec 17];11(11):1717. PMID: 31684170.Available at: https://www.mdpi.com/2072-6694/11/11/1717
Zhong DS, Sun LL, Dong LX. Molecular mechanismsof LKB1 induced cell cycle arrest. ThoracCancer [Internet]. 2013 Aug [cited 2021 Dec17];4(3):229–33. PMID: 28920233. Available at:https://onlinelibrary.wiley.com/doi/10.1111/1759-7714.12003
de Freitas RCC, Bortolin RH, Lopes MB, TamborlinL, Meneguello L, Silbiger VN, et al. Modulationof miR-26a-5p and miR-15b-5p exosomalexpression associated with clopidogrel-inducedhepatotoxicity in HepG2 cells. Front Pharmacol.2017 Dec 12;8:906. PMID: 29311920. https://doi.org/10.3389/fphar.2017.00906
Manning M, Jiang Y, Wang R, Liu L, Rode S,Bonahoom M, et al. Pan-cancer analysis of RNAmethyltransferases identifi es FTSJ3 as a potentialregulator of breast cancer progression. RNABiol. 2020 Apr;17(4):474–86. PMID: 31957540.Epub 2020 Jan 19.
Rodríguez V, Chen Y, Elkahloun A, Dutra A, PakE, Chandrasekharappa S. Chromosome 8 BACarray comparative genomic hybridization andexpression analysis identify amplifi cation andoverexpression of TRMT12 in breast cancer.Genes Chromosomes Cancer [Internet]. 2007Jul;46(7):694–707. PMID: 17440925. https://doi.org/10.1002/gcc.20454
Zhao S, Fung-Leung WP, Bittner A, Ngo K, LiuX. Comparison of RNA-Seq and microarrayin transcriptome profi ling of activated T cells.PLoS One [Internet]. 2014 Jan 16 [cited 2021Dec 15];9(1):e78644. PMCID: PMC3894192.Available at: https://dx.plos.org/10.1371/journal.pone.0078644
Wong L, Jiang K, Chen Y, Hennon T, HolmesL, Wallace CA, et al. Limits of peripheralblood mononuclear cells for gene expressionbasedbiomarkers in juvenile idiopathic arthritis.Sci Rep. 2016 Jul 7;6:29477. PMCID:PMC4935846.
Dhabhar FS, Malarkey WB, Neri E, McEwenBS. Stress-induced redistribution of immunecells – from barracks to boulevards to battlefields: a tale of three hormones – Curt RichterAward Winner. Psychoneuroendocrinology. 2012Sep;37(9):1345–68. PMCID: PMC3412918.