NSF Postdoctoral Fellowship in Biology FY 2017: Cellular mechanisms for preferential intracellular pH regulation
NSF Postdoctoral Fellowship in Biology FY 2017: Cellular mechanisms for preferential intracellular pH regulation
批准号:
1709911
负责人:
Jinae Roa
金额:
$13.8万
依托单位:
依托单位国家:
美国
项目类别:
Fellowship Award
财政年份:
2017
资助国家:
美国
项目状态:
已结题
起止时间:
2017-09-01 至 2019-08-31
中文摘要
这是NSF生物学博士后研究奖学金,根据扩大生物学中代表性不足的群体的参与计划。这位名叫Jinae罗阿的研究员正在进行研究和接受培训,以增加生物学中代表性不足的群体的参与。这位研究员正在接受不列颠哥伦比亚省大学的科林·布劳纳的指导。他正在研究动物如何利用单个细胞产生的信号来维持心脏、骨骼肌和肝脏等重要器官的正常功能。这项研究的重点是鱼类在自然极端环境中使用的细胞机制,研究结果将提供有关动物如何感知和修复对器官功能产生负面影响的条件的关键信息。在推广活动中,该研究员通过志愿担任市中心科学101计划的教育工作者和在温哥华水族馆领导互动实践活动来支持多样化的当地社区。此外,该研究员正在培训和指导研究生和本科生。在完成研究金活动后,研究员将在一个主要使命包括增加和维持多样性的美国机构寻求就业,在那里研究员可以作为年轻妇女和来自代表性不足群体的学生的榜样和导师。本研究的主要目的是调查的第一次负责传感和调节细胞内pH值(pHi)的鱼,优先调节组织pH值,而不是血液细胞外pH值(pHe)的细胞机制。限制酸碱应激是脊椎动物生理系统的重要功能,因为它减少了对氢离子(H+)的有害暴露,氢离子(H+)对代谢等基本功能产生负面影响。然而,信息是缺乏的机制,pHi的感觉,什么离子通道参与,如果有任何整体动物激素的影响,优先调节组织。为了解决这些问题,该研究员正在研究一种鱼类(白色鲟鱼,Acipenser transmontanus)整个组织中的酸碱传感器。此外,该研究员正在建立从白色鲟鱼的心脏、肌肉和肝脏组织分离的细胞的原代培养物,以研究酸碱感应和调节的机制,测试以下假设:(1)优先调节pHi是由进化上保守的酸碱感应器可溶性腺苷酸环化酶(sAC)、Na+/H+交换器(NHE)和Na+/HCO 3-共转运体(NBC)促进的;和(2)优先的pHi调节受到整个动物过程的影响,从而在培养的细胞中降低。
英文摘要
This is an NSF Postdoctoral Research Fellowship in Biology, under the program Broadening Participation of Groups Under-represented in Biology. The fellow, Jinae Roa, is conducting research and receiving training that is increasing the participation of groups underrepresented in biology. The fellow is being mentored by Colin Brauner at the University of British Columbia. The fellow is investigating how animals use signals produced by individual cells to maintain proper function of vital organs like the heart, skeletal muscle, and liver. The research focuses on cellular mechanisms used by fish from naturally extreme environments, and the results will provide critical information on how animals sense and repair conditions that negatively affect organ function. During outreach activities, the fellow is supporting the diverse local community by volunteering as an educator for an inner-city Science 101 program and by leading interactive hands-on activities at the Vancouver Aquarium. In addition, the fellow is training and mentoring graduate and undergraduate students. Upon completion of fellowship activities, the fellow will seek employment at a US institution whose primary mission includes increasing and sustaining diversity, where the fellow can serve as a role model and mentor for young women and students from underrepresented groups. The primary aim of this study is to investigate for the first time the cellular mechanisms responsible for sensing and regulating intracellular pH (pHi) in fish that preferentially regulate tissue pHi instead of blood extracellular pH (pHe). Limiting acid-base stress is an important function of vertebrate physiological systems as it reduces harmful exposure to hydrogen ions (H+), which negatively affect essential functions such as metabolism. However, information is lacking on the mechanisms by which pHi is sensed, what ion channels are involved, and if there is any whole-animal hormonal influence on preferentially regulated tissues. To address these questions, the fellow is investigating acid-base sensors in whole tissues in a fish species that is a preferential pHi regulator (white sturgeon, Acipenser transmontanus). In addition, the fellow is creating primary cultures of cells isolated from heart, muscle, and liver tissues of white sturgeon to study mechanisms for acid-base sensing and regulation, testing the following hypotheses: (1) preferential pHi regulation is facilitated by the evolutionarily conserved acid-base sensor soluble adenylyl cyclase (sAC), Na+/H+ exchanger (NHE), and Na+/HCO3- cotransporter (NBC); and (2) preferential pHi regulation is influenced by whole-animal processes and thereby reduced in cultured cells.
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