Title The Roles of Epigenetic Modifications in Embryonic and Adult Neurogenesis
Title (croatian) Uloge epigenetskih modifikacija u embrionalnoj i adultnoj neurogenezi
Author Katarina Vagaja
Mentor Jelena Ban (mentor)
Committee member Nicholas James Bradshaw (predsjednik povjerenstva)
Committee member Miranda Mladinić Pejatović (član povjerenstva)
Committee member Jelena Ban (član povjerenstva)
Granter University of Rijeka (Department of Biotechnology) Rijeka
Defense date and country 2020-07-24, Croatia
Scientific / art field, discipline and subdiscipline BIOTECHNICAL SCIENCES Biotechnology
Abstract The entire nervous system develops from common neural stem cells (NSCs) that line the neural tube during the first weeks of embryonic development. NSCs are self-renewing, multipotent cells that generate neural progenitor cells by asymmetric division, and which, through a limited number of divisions, differentiate into specialized cells of the nervous system: neurons, oligodendrocytes, and astrocytes. Although most neurons are generated before birth, it has been shown that under the influence of appropriate stimuli, in adult mammals and humans, neurogenesis continues throughout life in limited regions of the brain; the subgranular zone of the dentate gyrus in the hippocampus and the subventricular zone of the lateral ventricles. Generation of neurons from NSCs encompasses successive stages of progenitor expansion, differentiation, maturation, and integration of new-born neurons into functional neural circuits. Numerous intrinsic and extrinsic factors are involved in the regulation of neurogenesis, forming a complex network of signalling pathways. It seems that epigenetic modifications and their cooperation play an integral role in the precise control of gene expression, which is crucial for the proper acquisition of neural fate. This review will comprehensively summarize the hitherto known roles of epigenetic modifications, in particular DNA modifications, histone modifications and non-coding RNA molecules, in regulating both embryonic and adult neurogenesis in the vertebrate CNS, as well as their mutual mechanisms of cooperation. Further elucidation of the role of epigenetic mechanisms in the process of neurogenesis could lead to the development of novel therapies needed for the treatment of neurodevelopmental and neurodegenerative disorders.
Abstract (croatian) Čitav živčani sustav razvija se iz zajedničkih neuralnih matičnih stanica (eng. neural stem cells, NSCs) koje oblažu neuralnu cijev tijekom prvih tjedana embrionalnog razvoja. NSCs su samoobnavljajuće, multipotentne stanice koje asimetričnom diobom generiraju neuralne progenitorske stanice, a koje kroz ograničen broj dioba diferenciraju u specijalizirane stanice živčanog sustava: neurone, oligodendrocite i astrocite. Iako većina neurona nastaje prije rođenja, dokazano je da se pod utjecajem odgovarajućih podražaja, u odraslih sisavaca i čovjeka, neurogeneza nastavlja tijekom cijeloga života u ograničenim regijama mozga; subgranularnoj zoni dentatnog gyrus-a u hipokampusu i subventrikularnoj zoni bočnih ventrikula. Stvaranje neurona iz NSCs uključuje uzastopne faze ekspanzije progenitora, diferencijaciju, sazrijevanje i integraciju novih neurona u funkcionalne neuralne krugove. U regulaciji neurogeneze sudjeluju brojni unutarnji i vanjski čimbenici, tvoreći kompleksnu mrežu signalnih puteva. Čini se da upravo epigenetske modifikacije te njihova međusobna suradnja igra sastavnu ulogu u preciznoj kontroli genske ekspresije ključnoj za pravilno usmjeravanje NSCs u stjecanje neuralne sudbine. Ovaj pregledni rad sveobuhvatno će sažeti do sad poznate uloge epigenetskih modifikacija, točnije DNA modifikacija, histonskih modifikacija i nekodirajućih RNA molekula, u regulaciji embrionalne i odrasle neurogeneze u centralnom živčanom sustavu kralježnjaka, kao i njihove međusobne mehanizme suradnje. Daljnje rasvjetljivanje uloga epigenetskih mehanizama u procesu neurogeneze mogao bi dovesti do razvoja novih terapija za liječenje neurorazvojnih i neurodegenerativnih poremećaja.
Keywords
Neurogenesis
epigenetics
DNA methylation
histone modifications
noncoding RNAs
Keywords (croatian)
Neurogeneza
epigenetika
DNA metilacija
histonske modifikacije
nekodirajuće RNA molekule
Language english
URN:NBN urn:nbn:hr:193:253912
Study programme Title: Biotechnology and drug research Study programme type: university Study level: undergraduate Academic / professional title: sveučilišni/a prvostupnik/prvostupnica biotehnologije i istraživanja lijekova (sveučilišni/a prvostupnik/prvostupnica biotehnologije i istraživanja lijekova)
Type of resource Text
File origin Born digital
Access conditions Open access
Terms of use
Repository Repository of the University of Rijeka, Department of Biotechnology
Created on 2020-07-23 17:34:15