Skip navigation

DSpace JSPUI

DSpace preserves and enables easy and open access to all types of digital content including text, images, moving images, mpegs and data sets

Learn More
DSpace logo
English
中文
  • Browse
    • Communities
      & Collections
    • Publication Year
    • Author
    • Title
    • Subject
    • Advisor
  • Search TDR
  • Rights Q&A
    • My Page
    • Receive email
      updates
    • Edit Profile
  1. NTU Theses and Dissertations Repository
  2. 醫學院
  3. 微生物學科所
Please use this identifier to cite or link to this item: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/16042
Title: 利用酵母菌系統探討人類SDHD(Sdh4/Shh4)參與遺傳性副神經節瘤之機制
Yeast as a Model to Investigate the Mechanism of hSDHD(Sdh4/Shh4)-mediated Hereditary Paraganglioma
Authors: Ya-Lan Chang
張雅嵐
Advisor: 鄧述諄(Shu-Chun Teng)
Keyword: 遺傳性副神經節瘤,腫瘤形成,琥珀酸脫氫&#37238,複合體,粒線體,活性氧化物,突變機率,
Hereditary Paraganglioma,tumorigenesis,SDH complex,mitochondria,reactive oxygen species,mutation frequency,
Publication Year : 2012
Degree: 碩士
Abstract: Hereditary paraganglioma (PGL) is a rare tumor that is mostly benign and mainly arises in the head, neck and abdomen. The first gene shown to be directly linked to PGL syndrome was SDHD. 87–100% of SDHD mutation carriers develop tumors. However, the exact mechanism for tumorigenesis of PGL is elusive. SDHD encodes a subunit of the mitochondrial tricarboxylic acid cycle enzyme, succinate dehydrogenase (SDH), which is a complex II component of the electron transport chain. In yeast Saccharomyces cerevisiae, Sdh4 is an ortholog of hSDHD, which major performs the succinate dehydrogenase function in the Sdh complex. Here we discovered a yeast mitochondrial novel protein, Shh4/Ylr164w, which displays higher sequence conservation to hSDHD than Sdh4. The protein expression level of Shh4 is increased when cells enter aerobic respiration. In nonfermentable carbon source, deletion of SHH4 further decreases the growth of sdh4△ cells. Deletion of SHH4 further decreases the mitochondrial membrane potential of sdh4△ cells in stationary phase. Deletion of SDH4 upregulates SHH4 expression. Furthermore, SHH4 overexpression rescues the inviable phenotype of sdh4△ upon growth on a nonfermentable carbon source. Shh4 is associated with Sdh3 and deletion of SDH4 increases the interaction between Sdh3 and Shh4. We also investigated the mechanism of PGL tumorigenesis by using S. cerevisiae as a model organism. As our result showed, the level of reactive oxygen species (ROS) and mutation frequency were increased in the SDH4 and SHH4 double-deleted cells. Altogether; these results demonstrate that Shh4 is another subunit of succinate dehydrogenase in yeast. Our data suggest that the deficiency of hSDHD/Sdh4p/Shh4p may result in an increased production of ROS which contributes to an increase in mutation frequency, genome instability, and PGL tumorigenesis.
URI: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/16042
Fulltext Rights: 未授權
Appears in Collections:微生物學科所

Files in This Item:
File SizeFormat 
ntu-101-1.pdf
  Restricted Access
1.51 MBAdobe PDF
Show full item record


Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.

社群連結
聯絡資訊
10617臺北市大安區羅斯福路四段1號
No.1 Sec.4, Roosevelt Rd., Taipei, Taiwan, R.O.C. 106
Tel: (02)33662353
Email: ntuetds@ntu.edu.tw
意見箱
相關連結
館藏目錄
國內圖書館整合查詢 MetaCat
臺大學術典藏 NTU Scholars
臺大圖書館數位典藏館
本站聲明
© NTU Library All Rights Reserved