Development of light-inducible Trk receptors for neurotrophins and application광 유도 신경영양물질수용체 활성의 조절 기술 개발 및 적용에 관한 연구

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To regulate cellular functions, many biological substances like hormones, growth factors and cytokines mediate proper cellular processes. Especially in the brain, neurotrophins are well-known to be key regulators in nervous system for the cell survival, differentiation and neuronal growth. Each neurotrophin bind to its specific Trk (tropomyosin-related kinase) receptor to mediate intracellular signaling pathways. In chapter 1, I introduce optoTrk, a new optogenetic technique to activate neurotrophin receptors with simple blue-light (488 nm) stimulation. The light-interacting module based on Arabidopsis thaliana cryptochrome 2 has homo-interacting property, used for engineering photoactivatable Trk receptors. Illumination of light efficiently activates canonical Trk downstream signaling pathways. A single light triggers transient signaling activation, reversibly reactivated with repetitive light stimuli. Moreover, the light-activated processes are tightly regulated with high spatiotemporal precision. OptoTrk system offers an effective way to control its receptor activities and experimental opportunities to study diverse biological processes both in vitro and in vivo. In chapter 2, I introduce the importance of actin waves in neuronal polarization. By activating TrkB receptor at growth cone area specifically with optoTrkB system, I found F-actin rich waves formed at somatodendritic region and moving toward the neurite tip. Light-mediated local TrkB activation at growth cone area initiates actin wave formation and following neurite elongation. Rearrangement of actin pool was emerged from local TrkB activation to cause F-actin accumulated waves and even growth cone induction at the stimulated neurite. Additionally, this local activation of TrkB receptor at growth cone brought about accumulation of developmentally regulated protein E (drebrin E) that found mostly in growing axons. Also, axon specific proteins such as End-Binding Protein 3 (EB3) and synaptophysin changed their orientation as recruited in the TrkB activated neurite specially. Thus, local TrkB activated signaling increase F-actin rich waves from altering actin balance to determine axonal fate in neuronal development.
Advisors
Heo, Won Doresearcher허원도researcher
Description
한국과학기술원 :생명과학과,
Publisher
한국과학기술원
Issue Date
2017
Identifier
325007
Language
eng
Description

학위논문(박사) - 한국과학기술원 : 생명과학과, 2017.2,[vii, 101 p. :]

Keywords

Trk receptor▼aoptogenetics▼aneurotrophin▼aneuronal polarity; actin-waves; 광유도-수용체▼a신경영양인자수용체▼a액틴파▼a신경세포극성화▼a신경세포발달과정

URI
http://hdl.handle.net/10203/264831
Link
http://library.kaist.ac.kr/search/detail/view.do?bibCtrlNo=866934&flag=dissertation
Appears in Collection
BS-Theses_Ph.D.(박사논문)
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