簡易檢索 / 詳目顯示

研究生: 韓岳庭
Yueh-Timg Han
論文名稱: Rab18在成年神經元新生和育幼行為中所扮演的角色
The Role of Rab18 in Adult Neurogenesis and Maternal Behaviors
指導教授: 王慈蔚
Wang, Tsu-Wei
學位類別: 碩士
Master
系所名稱: 生命科學系
Department of Life Science
論文出版年: 2013
畢業學年度: 101
語文別: 英文
論文頁數: 41
中文關鍵詞: Rab18成年神經元新生育幼行為神經幹細胞多巴胺
英文關鍵詞: Rab18, Adult neurogenesis, maternal behavior, neural stem cell, dopamine
論文種類: 學術論文
相關次數: 點閱:565下載:14
分享至:
查詢本校圖書館目錄 查詢臺灣博碩士論文知識加值系統 勘誤回報
  • Rab蛋白質屬於Ras相關的小GTP水解酶家族的一員。已知Rab蛋白質功能為調控胞囊運輸,有研究指出Rab18在神經內分泌細胞中為負調控因子,但是Rab18在成年的神經系統中所辦演的角色仍未被研究。在成年哺乳動物的腦中,仍有兩處有神經元新生,一處在嗅球,另一處在齒狀迴。成年神經元新生在嗅球的功能為分辨一般氣味和調控天生的嗅覺反應,如配偶的辨認和育幼行為;另一方面,成年神經元新生在齒狀迴的功能為抗憂鬱反應和海馬迴相關的學習與記憶。有趣的是,Rab18突變的雌鼠有嚴重的育幼行為缺損和無法辨認子代,這個缺陷如同沒有成年神經元新生的雌鼠,這顯示Rab18可能對於成年神經元新生非常重要。我們用BrdU標定新生的細胞,發現Rab18突變的雌鼠在嗅球的成年神經元新生降低,並且發現在齒狀迴顆粒細胞下區和側腦室下區的神經幹細胞、神經母細胞密度和它們的增生也比正常野生雌鼠低。此外,我們也發現Rab18突變的雌鼠嗅球和黑質內的多巴胺濃度上升。由於已知多巴胺會抑制成年神經元新生,這些結果表示Rab18可能透過抑制多巴胺釋放來調控成年神經元新生。

    Rab proteins belonging to Ras-related small GTPase superfamily are regulators of vesicle trafficking. Rab18 has been shown to act as a negative regulator of the secretory pathway in neuroendocrine cells. However, the role of Rab18 in the adult nervous system has not been studied. In the mammalian brain, adult neurogenesis occurs continuously in the olfactory bulb (OB) and the dentate gyrus (DG). The function of adult neurogenesis in the OB has been implicated in odor discrimination and innate pheromonal responses, such as mate recognition and maternal behaviors. On the other hand, adult neurogenesis in the DG is involved in antidepressant effects and hippocampal-dependent learning and memory. Interestingly, Rab18 null female mice have impaired maternal behaviors and pup recognition, which are the same behavior defects in female mice when their adult neurogenesis is blocked. This suggests that Rab18 may play important roles in adult neurogenesis. By BrdU, a thymidine analog, injection to label newborn cells, we observed that adult neurogenesis in the OB was decreased in Rab18 null female mice. Moreover, progenitor cells in the neural stem cell niche and cell proliferation in the SGZ and SVZ of Rab18 null female mice were also decreased. In addition, we found that there was a trend increase in the level of dopamine in the OB and substantia nigra (SN) in middle-aged adult Rab18 null female mice. Since dopamine has been known to inhibit adult neurogenesis, these results suggest that Rab18 may regulate adult neurogenesis through inhibiting dopamine release.

    Chinese Abstract-1 English Abstract-2 Introduction-4 Materials and Methods-9 Result-13 Discussion-20 References-25 Figures-30

    Alonso, M., Viollet, C., Gabellec, M.M., Meas-Yedid, V., Olivo-Marin, J.C., and Lledo, P.M. (2006). Olfactory discrimination learning increases the survival of adult-born neurons in the olfactory bulb. The Journal of neuroscience : the official journal of the Society for Neuroscience 26, 10508-10513.
    Alvarez-Buylla, A., and Garcia-Verdugo, J.M. (2002). Neurogenesis in adult subventricular zone. The Journal of neuroscience : the official journal of the Society for Neuroscience 22, 629-634.
    Banasr, M., Soumier, A., Hery, M., Mocaer, E., and Daszuta, A. (2006). Agomelatine, a new antidepressant, induces regional changes in hippocampal neurogenesis. Biological psychiatry 59, 1087-1096.
    Bem, D., Yoshimura, S., Nunes-Bastos, R., Bond, F.C., Kurian, M.A., Rahman, F., Handley, M.T., Hadzhiev, Y., Masood, I., Straatman-Iwanowska, A.A., et al. (2011). Loss-of-function mutations in RAB18 cause Warburg micro syndrome. American journal of human genetics 88, 499-507.
    Ben-Jonathan, N., and Hnasko, R. (2001). Dopamine as a prolactin (PRL) inhibitor. Endocrine Reviews 22, 724-763.
    Berg, D.A., Belnoue, L., Song, H., and Simon, A. (2013). Neurotransmitter-mediated control of neurogenesis in the adult vertebrate brain. Development 140, 2548-2561.
    Betarbet, R., Zigova, T., Bakat, R.A.E., and Luskin, M.B. (1996). Dopaminergic and GABAergic interneurons of the olfactory bulb are derived from the neonatal subventricular zone. Int J Devl Neuroscience 14, 921-930.
    Boldrini, M., Underwood, M.D., Hen, R., Rosoklija, G.B., Dwork, A.J., John Mann, J., and Arango, V. (2009). Antidepressants increase neural progenitor cells in the human hippocampus. Neuropsychopharmacology : official publication of the American College of Neuropsychopharmacology 34, 2376-2389.
    Brennan, P.A., and Keverne, E.B. (1997). Neural mechanisms of mammalian olfactory learning. Prog Neurobiol 51, 457-481.
    Colicelli, J. (2004). Human RAS superfamily proteins and related GTPases. Science's STKE : signal transduction knowledge environment 2004, RE13.
    Doetsch, F., and Hen, R. (2005). Young and excitable: the function of new neurons in the adult mammalian brain. Current opinion in neurobiology 15, 121-128.
    Hamilton, L.K., Joppe, S.E., L, M.C., and Fernandes, K.J. (2013). Aging and neurogenesis in the adult forebrain: what we have learned and where we should go from here. The European journal of neuroscience 37, 1978-1986.
    Imayoshi, I., Sakamoto, M., Ohtsuka, T., Takao, K., Miyakawa, T., Yamaguchi, M., Mori, K., Ikeda, T., Itohara, S., and Kageyama, R. (2008). Roles of continuous neurogenesis in the structural and functional integrity of the adult forebrain. Nature neuroscience 11, 1153-1161.
    Kippin, T.E., Kapur, S., and van der Kooy, D. (2005). Dopamine specifically inhibits forebrain neural stem cell proliferation, suggesting a novel effect of antipsychotic drugs. The Journal of neuroscience : the official journal of the Society for Neuroscience 25, 5815-5823.
    Larsen, C.M., and Grattan, D.R. (2010). Prolactin-induced mitogenesis in the subventricular zone of the maternal brain during early pregnancy is essential for normal postpartum behavioral responses in the mother. Endocrinology 151, 3805-3814.
    Larsen, C.M., Kokay, I.C., and Grattan, D.R. (2008). Male pheromones initiate prolactin-induced neurogenesis and advance maternal behavior in female mice. Hormones and behavior 53, 509-517.
    Leuner, B., Gould, E., and Shors, T.J. (2006). Is there a link between adult neurogenesis and learning? Hippocampus 16, 216-224.
    Lledo, P.M., Merkle, F.T., and Alvarez-Buylla, A. (2008). Origin and function of olfactory bulb interneuron diversity. Trends in neurosciences 31, 392-400.
    Lledo, P.M., and Saghatelyan, A. (2005). Integrating new neurons into the adult olfactory bulb: joining the network, life-death decisions, and the effects of sensory experience. Trends in neurosciences 28, 248-254.
    Magavi, S.S., Mitchell, B.D., Szentirmai, O., Carter, B.S., and Macklis, J.D. (2005). Adult-born and preexisting olfactory granule neurons undergo distinct experience-dependent modifications of their olfactory responses in vivo. The Journal of neuroscience : the official journal of the Society for Neuroscience 25, 10729-10739.
    Park, J.H., and Enikolopov, G. (2010). Transient elevation of adult hippocampal neurogenesis after dopamine depletion. Experimental neurology 222, 267-276.
    Pereira-Leal, J.B., and Seabra, M.C. (2001). Evolution of the Rab family of small GTP-binding proteins. Journal of molecular biology 313, 889-901.
    Sahay, A., and Hen, R. (2007). Adult hippocampal neurogenesis in depression. Nature neuroscience 10, 1110-1115.
    Sakamoto, M., Imayoshi, I., Ohtsuka, T., Yamaguchi, M., Mori, K., and Kageyama, R. (2011). Continuous neurogenesis in the adult forebrain is required for innate olfactory responses. Proceedings of the National Academy of Sciences of the United States of America 108, 8479-8484.
    Santarelli, L., Saxe, M., Gross, C., Surget, A., Battaglia, F., Dulawa, S., Weisstaub, N., Lee, J., Duman, R., Arancio, O., et al. (2003). Requirement of hippocampal neurogenesis for the behavioral effects of antidepressants. Science 301, 805-809.
    Schwartz, S.L., Cao, C., Pylypenko, O., Rak, A., and Wandinger-Ness, A. (2008). Rab GTPases at a glance. Journal of Cell Science 121, 246-246.
    Shingo, T., Gregg, C., Enwere, E., Fujikawa, H., Hassam, R., Geary, C., Cross, J.C., and Weiss, S. (2003). Pregnancy-stimulated neurogenesis in the adult female forebrain mediated by prolactin. Science 299, 117-120.
    Surget, A., Saxe, M., Leman, S., Ibarguen-Vargas, Y., Chalon, S., Griebel, G., Hen, R., and Belzung, C. (2008). Drug-dependent requirement of hippocampal neurogenesis in a model of depression and of antidepressant reversal. Biological psychiatry 64, 293-301.
    Vazquez-Martinez, R., Cruz-Garcia, D., Duran-Prado, M., Peinado, J.R., Castano, J.P., and Malagon, M.M. (2007). Rab18 inhibits secretory activity in neuroendocrine cells by interacting with secretory granules. Traffic 8, 867-882.
    Zerial, M., and McBride, H. (2001). Rab proteins as membrane organizers. Nature reviews Molecular cell biology 2, 107-117.
    Zhao, C., Deng, W., and Gage, F.H. (2008). Mechanisms and functional implications of adult neurogenesis. Cell 132, 645-660.

    下載圖示
    QR CODE