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Molecular mechanisms of senescence-dependent

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Author(s)
노화과정에서 발생하는 mismatch 복구기능 저하 기전
Issued Date
2007
Abstract
DNA damage and mutations in the genome increase with age. To determine the potential mechanisms of senescence-dependent increases in genomic instability, we analyzed DNA mismatch repair (MMR) efficiency in young and senescent human colonic fibroblast and human embryonic lung fibroblast. It was found that MMR activity is significantly reduced in senescent cells. Western blot and immunohistochemistry analysis revealed that hMSH2 and MSH6 protein (MutSα complex), which is a known key component in the MMR pathway, is markedly down-regulated in senescent cells. Moreover, the addition of purified MutS to extracts from senescent cells led to the restoration of MMR activity. Semiquantitative RT-PCR analysis exhibited that MSH2 mRNA level is reduced in senescent cells. In addition, a decrease in E2F transcriptional activity in senescent cells was found to be crucial for MSH2 suppression. E2F1 siRNA expression reduced hMSH2 expression and MMR activity in young human primary fibroblast cells. Importantly, expression of E2F1 in quiescent cells restored the MSH2 expression as well as MMR activity, whereas E2F1 infected senescent cells exhibited no restoration of MSH2 expression and MMR activity. These results indicate that the suppression of E2F1 transcriptional activity in senescent cells lead to stable repression of MSH2, followed by a induction of MutS dysfunction, which results in a reduced cellular MMR capacity in senescent cells.
Alternative Author(s)
Cho Hyang Hoon
Affiliation
Graduate School of CHosun University
Department
일반대학원 의학과
Awarded Date
2008-02
Table Of Contents
CONTENTS
Contents…………………………………………………………………………...ⅰ
List of Figures……………………………………………………………………...ii

ABSTRACT……………………………………………………………………..1
I. NTRODUCTION……………………………………………………………3
II. MATERIALS AND METHODS
1. Cell culture…………………….…………………………………………... 5
2. Animals and tissue preparation….…………….………………………..…. 5
3. Immunohistochemistry……………...…………………………………..…. 6
4. Western blotting………………………………………………………….....6
5. Senescence-associated -galactosidase staining………………..………...... 7
6. Semiquantitative RT-PCR…………………………………......................... 8
7. Purification of human MutS………………………………………….…... 8
8. Construction of adenoviral vector encoding E2F1 cDNA……………..…... 9
9. Promoter luciferase activity assay………………………………..…….…. .9
10. Chromatin Immunoprecipitation assays…………………………………… 9
11. In vitro MMR assay…………………………………………….................10

III. RESULTS
1. Constitutive level of MSH2 and MSH6 protein reduces with senescence……………………………………………………….……...…12
2. MSH2 and MSH6 are lower in the large intestine of senescence accelerated mouse……………………………..……………………………………….17
3. Mismatch repair activity is attenuated in senescent CCD-18Co and IMR90 cells ……………...………………………………………………….……. 20
4. Reduced transcriptional activity of E2F1 in senescent cells leads to a reduction in MSH2 promoter activity ……………………………….……24
5. Silencing of the E2F1 in young CCD-18Co and IMR90 cells via siRNA lead to a decrease in the MSH2 expression………………………………..33
6. E2F1-responsive MSH2 is stably repressed in senescent cells but not in quiescent cells………………………………..………………………..…..36

IV. DISCUSSION…………………………………………………………… 40
V. REFERENCES……………………………………………………..…..... 47
KOREAN ABSTRACT…………………………………………………….57

LIST OF FIGURE

Fig.1. Expression of mismatch repair protein levels in young and senescenct cells..............................................................................................................14
Fig.2. Age-dependent chages in MSH2 and MHS6 protein………….………..…..18
Fig.3. The mismatch repair activity in young and senescent CCD-18Co and IMR 90 cells………………………………………………………..….……………. 21
Fig.4. Senescenct-dependnet changes in MSH2 mRNA………………..…………27
Fig.5. Senescent-dependent decreases in MSH2 promoter activity………………. 29
Fig.6. Chromatin immunoprecipitation analysis of E2F1 binding to the MSH2 promoter in young and senescent CCD-18Co and IMR90 cless……….....31
Fig.7. siRNA-mediated down-regulation of the E2F1 leads to decrease in MSH2 expression and mismatch repair activity…………………………………..34
Fig.8. MSH2 expression in senescent cells is resistance to activation by E2F1.…38
Degree
Doctor
Publisher
조선대학교
Citation
노화과정에서 발생하는 mismatch 복구기능 저하 기전. (2007). Molecular mechanisms of senescence-dependent.
Type
Dissertation
URI
https://oak.chosun.ac.kr/handle/2020.oak/6999
http://chosun.dcollection.net/common/orgView/200000235892
Appears in Collections:
General Graduate School > 4. Theses(Ph.D)
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