Title Ispitivanje uloge proteaze BACE1 u patogenezi rijetke nasljedne neurodegenerativne Niemann-Pickove bolesti tipa C
Title (english) Elucidating the role of a protease BACE1 in the pathogenesis of a rare neurodegenerative disorder Niemann-Pick type C
Author Ana Rastija
Mentor Silva Katušić Hećimović (mentor) MBZ: 187522
Committee member Jelena Ban (predsjednik povjerenstva) MBZ: 355721
Committee member Ivana Munitić (član povjerenstva) MBZ: 339102
Committee member Dubravka Švob Štrac (član povjerenstva) MBZ: 258591
Granter University of Rijeka (Faculty of Biotechnology and Drug Development) Rijeka
Defense date and country 2023, Croatia
Scientific / art field, discipline and subdiscipline BIOMEDICINE AND HEALTHCARE Basic Medical Sciences Neuroscience
Universal decimal classification (UDC ) 577 - Biochemistry. Molecular biology. Biophysics
Abstract Bolest Niemann-Pick tipa C (NPC) je rijetka nasljedna neurodegenerativna bolest nakupljanja slobodnog kolesterola i drugih lipida uzrokovana mutacijama u genu NPC1 ili NPC2, koja pokazuje niz patoloških sličnosti s kompleksnom Alzheimerovom bolesti (AB). Naša prethodna istraživanja su utvrdila povišeno djelovanje ključnog enzima u AB, proteaze BACE1, u NPC modelima. Stoga je cilj ovog doktorskog rada bio istražiti molekularnu pozadinu uočenog efekta te ispitati učinak inhibicije BACE1 na patološke karakteristike bolesti. Također, cilj je bio analizirati lipidom kako bi se utvrdile najranije promjene lipida odgovorne za različitu vulnerabilnost moždanih regija i disfunkciju endosoma u bolesti NPC. Korištene su primarne kulture neurona, kulture organotipskih rezova mozgova te moždane regije hipokampusa i malog mozga miševa koji imaju spontanu mutaciju u genu NPC1 te ne sintetiziraju proteina NPC1 (miševi NPC1) i miševa divljeg tipa (wt, od engl. wild type). U neuronima miševa NPC1 u odnosu na wt detektirana je povećana proteoliza supstrata BACE1- Sez6L i Sez6. Imunocitokemijska analiza je pokazala nakupljanje ovih supstrata u ranim endosomima NPC1 neurona. Promijenjen smještaj Sez6 i Sez6L u ranim endosomima je potvrđen i frakcioniranjem endolizosoma u moždanim regijama hipokampusa i malog mozga miševa NPC1. Interesantno, tretman inhibitorom BACE1 je djelomično popravio patološke značajke bolesti NPC, uključujući smanjenje nakupljanja Sez6 i Sez6L, smanjenje veličine vezikula ranih endosoma te smanjenje ukupne razine proteina tau u neuronima NPC1, kao i smanjenje neuroinflamacije (aktivacije astrocita i mikroglija) u kortiko-hipokamplanim rezovima miševa NPC1. Nadalje, analiza lipidoma je utvrdila da već u asimptomatskoj fazi bolesti postoji značajna razlika u distribuciji i razini određenih lipida u malom mozgu i hipokampusu, te u ranim endosomima miševa NPC1 u odnosu na wt. Ovo istraživanje je utvrdilo disfunkciju proteaze BACE1 i njenih supstrata te njihovu potencijalnu ulogu u patogenezi bolesti NPC. Uočene promjene sastava lipida moždanih regija i ranih endosoma mogu doprinijeti razvoju patoloških promjena u bolesti NPC.
Abstract (english) Niemann-Pick disease type C (NPC) is a rare hereditary neurodegenerative disorder, caused by mutations in the NPC1 or NPC2 gene. It is characterised by accumulation of free cholesterol and other lipids and has a number of pathological similarities with complex Alzheimer's disease (AD). In our previous studies, increased activity of BACE1, the key enzyme of AD, was found in NPC mouse models. Therefore, the aim of this dissertation was to explore the molecular background of the observed effect and examine the effect of BACE1 inhibition on the pathological characteristics of the disease. In addition, the goal was to determine the earliest lipid changes responsible for the differences in brain region vulnerability and endosomal dysfunction in NPC disease by lipidome analysis. Primary neuronal cell cultures, organotipic brain slice cultures, and hippocampus and cerebellum of mice that have a spontaneous mutation in NPC1 gene and do not synthesize the NPC1 protein (NPC1 mice) and wild type mice (wt) were used. NPC1 neurons showed increased proteolysis of BACE1 substrates- Sez6L and Sez6 compared with wt neurons. Immunocytochemical analysis demonstrated accumulation of the aforementioned substrates in early endosomes of NPC1 neurons. The altered localization of Sez6 and Sez6L in early endosomes was confirmed by endolysosome fractionation in the hippocampus and cerebellum of NPC1 mice. Interestingly, treatment with a BACE1 inhibitor partially ameliorated the pathological features of NPC disease, including reduction in the accumulation of Sez6 and Sez6L, reduction in the size of early endosome vesicles, reduction in total tau protein level in NPC1 neurons, and reduction in neuroinflammation (activation of astrocytes and microglia) in cortico-hippocampal brain slices from NPC1 mice. Lipidome analysis revealed that even in the asymptomatic phase of the disease, there are significant differences in the distribution and content of certain lipids between NPC1 and wt mice in the cerebellum and hippocampus, and in early endosomes. These studies provide evidence for a possible role of the BACE1 protease and its substrates in the pathogenesis of NPC disease. The observed changes in the lipid composition of brain regions and early endosomes may contribute to the development of the pathological features of NPC disease.
Keywords
BACE1
Niemann-Pick tip C
Alzheimarova bolest
lipidomika
endolizosomski transport
rijetke bolesti
neurodegeneracija
neuroinflamacija
Keywords (english)
BACE1
Niemann-Pick type C
Alzheimer's disease
lipidomics
endolysosomal transport
rare disease
neurodegeneration
neuroinflammation
Language croatian
URN:NBN urn:nbn:hr:193:378704
Promotion 2023
Study programme Title: Medicinal chemistry Study programme type: university Study level: postgraduate Academic / professional title: doktor/doktorica znanosti, interdisciplinarna područja znanosti, polje biotehnologija u biomedicini (doktor/doktorica znanosti, interdisciplinarna područja znanosti, polje biotehnologija u biomedicini)
Type of resource Text
File origin Born digital
Access conditions Open access
Terms of use
Created on 2023-03-13 09:38:36