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Ligand Induced Folding Dynamics and Co-transcriptional Effect of TPP Riboswitch : TPP riboswitch의 접힘과정에 있어서 Ligand 유도 접힘과 전사과정이 미치는 효과에 관하여.

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dc.contributor.advisor홍성철-
dc.contributor.author엄희수-
dc.date.accessioned2017-07-19T06:11:05Z-
dc.date.available2017-07-19T06:11:05Z-
dc.date.issued2016-02-
dc.identifier.other000000133525-
dc.identifier.urihttp://dcollection.snu.ac.kr:80/jsp/common/DcLoOrgPer.jsp?sItemId=000000133525-
dc.description학위논문(박사)--서울대학교 대학원 :자연과학대학 물리·천문학부,2016. 2. 홍성철.-
dc.description.abstractNon-coding RNA (ncRNA), which was initially considered as junk RNA, is increasingly being recognized as a common tool to regulate gene expression. Almost all stages of gene expression such as initiation, termination and maturation in both transcription and translation can be regulated by ncRNA. Unlike messenger RNA (mRNA) which plays a role as a code for the corresponding protein, ncRNA works not only as a functional sequence but also as a folding structure. These folding structures of ncRNA can have various functions like proteins, for example, binding a small ligand molecule, catalyzing cleavage reaction and associating with proteins.
Riboswitches are typical examples of ncRNA and regulate gene expression by coupling ligand binding to a structural transition of the riboswitch, although the exact coupling mechanism remains unclear. We addressed this issue by characterizing both the ligand-free state of the Escherichia coli TPP (thiamine pyrophosphate) riboswitch aptamer and its structural transition upon ligand binding using single-molecule FRET (fluorescence resonance energy transfer). Our results reveal that the TPP aptamer dynamically samples a partially closed form resembling the holo-aptamer in the absence of a ligand but that TPP binding is not selective for the partially closed form, which is an unexpected finding in the light of the recently suggested conformational selection model. Additionally, we found that the preformation of the aptamer secondary structure is required for TPP binding, suggesting that TPP regulates gene expression by cotranscriptionally controlling the folding pathway of the TPP riboswitch.
Recently, the fact that RNA folds sequentially as it is being transcribed is carefully considered for RNA structure prediction and dynamics study. It has been shown that this co-transcriptional effect strongly influences RNA folding pathway suggesting that the formation of transient conformations serves as a guideline for the following co-transcriptional folding.
Elongation complex (EC) which works as a basic unit to produce RNA from DNA was successfully reconstituted for the co-transcriptional observation. By using a single-molecule FRET microscopy, we observed RNA folding process for individual molecules. We found that TPP riboswitch regulates the gene expression co-transcriptionally that means TPP concentration can influence the folding process during transcription. We expect that the EC reconstitution method for smFRET will be useful for structural studies of ncRNA.
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dc.description.tableofcontentsChapter 1. Introduction 1
1.1. RNA folding 1
1.2. Single-Molecule FRET 3
1.3. References 5

Chapter 2. Intrinsic conformational dynamics of the TPP riboswitch aptamer and its global structural transition induced by unselective ligand binding 7
2.1. Introduction 7
2.2. Materials and Methods 11
2.3. Results and Discussion 14
2.4. Conclusion and Outlook 46
2.5. References 51

Chapter 3. Reconstitution of RNA Transcription Machinery and Co-transcriptional effect on TPP riboswitch 59
3.1. Introduction 59
3.2. Materials and Methods 61
3.3. Results and Discussion 64
3.4. Conclusion and Outlook 73
3.5. Appendix (Future Work) 74
3.6. References 76

Appendix. Single-Molecule FRET Combined with Magnetic Tweezers at Low Force Regime 77
A.1. Introduction 77
A.2. Materials and Methods 79
A.3. Results and Discussion 81
A.4. Conclusion and Outlook 85
A.5. References 87

Abstract in Korean (국문초록) 89
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dc.format.extent91-
dc.language.isoeng-
dc.publisher서울대학교 대학원-
dc.subjectSingle-molecule fluorescence spectroscopy, Fluorescence resonance energy transfer (FRET), Ligand induced fit, Co-transcriptional folding, TPP riboswitch, Elongation complex-
dc.subject.ddc523-
dc.titleLigand Induced Folding Dynamics and Co-transcriptional Effect of TPP Riboswitch-
dc.title.alternativeTPP riboswitch의 접힘과정에 있어서 Ligand 유도 접힘과 전사과정이 미치는 효과에 관하여.-
dc.typeThesis-
dc.typeDissertation-
dc.contributor.AlternativeAuthorHeesoo Uhm-
dc.contributor.department자연과학대학 물리·천문학부-
dc.description.degreeDoctor-
dc.date.awarded2016-02-
dc.contributor.major물리학-
dc.identifier.holdings000000000027▲000000000027▲000000133525▲-
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