성심산학협력단

 

연구정보

연구자현황

야마오카야스요(YamaokaYasuyo) 프로필 이미지

야마오카야스요 조교수

YamaokaYasuyo

연구분야

생명공학

연구키워드

식물생명공학

교수소개


						
야마오카 야스요 교수는 동경약학대학교(학사), 동경대학교(석사), 사이타마대학교(박사)에서 학위를 받았으며, 포항공과대학교에서 박사후연구원 및 연구교수, 이후 서울대학교 연구교수를 거쳐, 2021년 3월에 가톨릭대학교 생명공학과 조교수로 임용되었다. 세포생물학과 분자생문학을 기반으로 식물 지질 대사와 기능 해석, 스트레스 내성 메커니즘 해석을 통해 식물의 활용 방안을 높이는 연구를 수행 중이다. 이를 위해 모델 식물인 애기 장대, 모델 미세조류인 클라미도모나스를 기반으로 기초연구를 수행하며, 이를 개구리밥 및 클로렐라에 적용하여 실용화를 검토하고 있다. 한국식물학회(KSPB), 한국미생물 생명공학회(KMB), 국제생물지질학회(SPL), 미국식물생리학회 (ASPB), 일본식물생리학회(JSPP), 일본식물지절학연구회(JAPLR)에서 정회원, 아시아-태평양 식물 지질학회(ASPL) 위원으로 활동 중이다.
Professor Yasuyo Yamaoka is an assistant professor in the Department of Biotechnology at the Catholic University of Korea. She earned her bachelor's degree from Tokyo University of Pharmacy and Life Sciences (Tokyo, Japan), followed by a master's degree from The University of Tokyo (Tokyo, Japan). Later, she completed her doctoral studies at Saitama University (Saitama, Japan) after a change in her supervising professor's position. Subsequently, she worked as a postdoctoral researcher and research professor at Pohang University of Science and Technology (Pohang, Korea), then served as a research professor at Seoul National University (Seoul, Korea) before joining the Catholic University of Korea as an assistant professor in 2021. Professor Yamaoka's research focuses on understanding plant lipid metabolism and function using cellular and molecular biology techniques. She aims to expand the applications of plant biotechnology for various uses. Her lab collaborates internationally with countries such as Japan, the United States, and France, and provides student education to participate in global research activities. Currently, she is an active member of several professional societies, including the Korean Society of Plant Biologists (KSPB), Korean Society for Microbiology and Biotechnology (KMB), International Symposium on Plant Lipids (ISPL), American Society of Plant Biologists 

최종학력

2011.09.30 | 사이타마대학교 | 이공학 전공 | 생명과학

연구실적

  • 2023.11 | 교신저자 | PLANT AND CELL PHYSIOLOGY, 제65권 6호, pp.916-927
    Sterol Biosynthesis Contributes to Brefeldin-A-Induced Endoplasmic Reticulum Stress Resistance in Chlamydomonas reinhardtii
  • 2023.11 | 공동저자 | JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 제71권 46호, pp.17833-17841
    Overexpression of a MYB1 Transcription Factor Enhances Triacylglycerol and Starch Accumulation and Biomass Production in the Green Microalga Chlamydomonas reinhardtii
  • 2023.04 | 교신저자 | PLANT AND CELL PHYSIOLOGY, 제64권 4호, pp.392-404
    Effect of Common ER Stress-Inducing Drugs on the Growth and Lipid Phenotypes of Chlamydomonas and Arabidopsis
  • 2022.11 | 교신저자 | JOURNAL OF MICROBIOLOGY AND BIOTECHNOLOGY, 제32권 11호, pp.1357-1372
    Biotechnological Approaches for Biomass and Lipid Production Using Microalgae Chlorella and Its Future Perspectives
  • 2022.05 | 공동저자 | PLANT PHYSIOLOGY, 제189권 1호, pp.360-374
    Early seed development requires the A-type ATP-binding cassette protein ABCA10
  • 2022.04 | 교신저자 | NEW PHYTOLOGIST, pp.595-610
    The Chlamydomonas transcription factor MYB1 mediates lipid accumulation under nitrogen depletion
  • 2022.02 | 공동저자 | PLANT CELL, 제34권 2호, pp.910-926
    The Chlamydomonas bZIP transcription factor BLZ8 confers oxidative stress tolerance by inducing the carbon-concentrating mechanism
  • 2021.09 | 제1저자 | PLANT AND CELL PHYSIOLOGY, 제62권 9호, pp.1396-1408
    Phosphatidylserine Is Required for the Normal Progression of Cell Plate Formation in Arabidopsis Root Meristems
  • 2021.01 | 공동저자 | NEW PHYTOLOGIST, 제229권 1호, pp.156-172
    Arabidopsisseedling establishment under waterlogging requires ABCG5-mediated formation of a dense cuticle layer
  • 2020.09 | 공동저자 | PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 제117권 37호, pp.23131-23139
    The phosphatidylethanolamine-binding protein DTH1 mediates degradation of lipid droplets in Chlamydomonas reinhardtii
  • 2020.06 | 공동저자 | AGING CELL, 제19권 6호
    Caenorhabditis elegans Lipin 1 moderates the lifespan-shortening effects of dietary glucose by maintaining omega-6 polyunsaturated fatty acids
  • 2020.04 | 공동저자 | PLANT CELL REPORTS, 제39권 4호, pp.473-487
    Non-intrinsic ATP-binding cassette proteins ABCI19, ABCI20 and ABCI21 modulate cytokinin response at the endoplasmic reticulum in Arabidopsis thaliana
  • 2019.08 | 공동저자 | PLOS BIOLOGY, 제17권 8호
    MDT-15/MED15 permits longevity at low temperature via enhancing lipidostasis and proteostasis
  • 2019.06 | 공동저자 | PLANT AND CELL PHYSIOLOGY, 제60권 6호, pp.1184-1196
    Molecular Genetic Tools and Emerging Synthetic Biology Strategies to Increase Cellular Oil Content in Chlamydomonas reinhardtii
  • 2019.05 | 교신저자 | PLANT CELL, 제31권 5호, pp.1127-1140
    The bZIP1 Transcription Factor Regulates Lipid Remodeling and Contributes to ER Stress Management in Chlamydomonas reinhardtii
  • 2018.04 | 제1저자 | PLANT JOURNAL, 제94권 1호, pp.91-104
    Identification and functional study of the ER stress sensor IRE1 in Chlamydomonas reinhardtii
  • 2016.11 | 제1저자 | PLANT BIOTECHNOLOGY JOURNAL, 제14권 11호, pp.2158-2167
    Identification of a Chlamydomonas plastidial 2-lysophosphatidic acid acyltransferase and its use toengineer microalgae with increased oil content
  • 2016.03 | 공동저자 | MOLECULAR PLANT, 제9권 3호, pp.338-355
    Plant ABC Transporters Enable Many Unique Aspects of a Terrestrial Plant's Lifestyle
  • 2015.12 | 공동저자 | GENES AND DEVELOPMENT, 제29권 23호, pp.2490-2503
    SREBP and MDT-15 protect C. elegans from glucose-induced accelerated aging by preventing accumulation of saturated fat
  • 2015.10 | 공동저자 | JOURNAL OF PLANT BIOLOGY, 제58권 5호, pp.344-351
    Characterization of a Chlamydomonas reinhardtii mutant defective in a maltose transporter
  • 2015.06 | 공동저자 | JOURNAL OF PLANT BIOLOGY, 제58권 3호, pp.183-192
    Epigenetic floral homeotic mutation in pD991-AP3-derived T-DNA-tagged lines for CTP:Phosphorylcholine cytidylyltransferase (CCT) Genes: The homeotic mutation of the cct1-1 allele is enhanced by the cct2 allele and alleviated by CCT1 overexpression
  • 2015.02 | 공동저자 | FRONTIERS IN MICROBIOLOGY, 제6권
    The small molecule fenpropimorph rapidly converts chloroplast membrane lipids to triacylglycerols in Chlamydomonas reinhardtii
  • 2014.01 | 공동저자 | PLANT CELL, 제26권, pp.310-324
    The Role of Arabidopsis ABCG9 and ABCG31 ATP Binding Cassette Transporters in Pollen Fitness and the Deposition of Steryl Glycosides on the Pollen Coat
  • 2013.12 | 공동저자 | PLOS ONE, 제8권
    Rapid Induction of Lipid Droplets in Chlamydomonas reinhardtii and Chlorella vulgaris by Brefeldin A
  • 2013.11 | 공동저자 | PLANT BIOTECHNOLOGY, 제30권 4호, pp.327-333
    Genetic disruption of CRC 12S globulin increases seed oil content and seed yield in Arabidopsis thaliana
  • 2013.01 | 공동저자 | PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 제110권, pp.773-778
    AtABCA9 transporter supplies fatty acids for lipid synthesis to the endoplasmic reticulum
  • 2011.08 | 제1저자 | PLANT JOURNAL, 제67권 4호, pp.648-661
    PHOSPHATIDYLSERINE SYNTHASE1 is required for microspore development in Arabidopsis thaliana
  • 2009.10 | 공동저자 | PLANT AND CELL PHYSIOLOGY, 제50권 10호, pp.1727-1735
    Isozyme-specific modes of activation of CTP: Phosphorylcholine cytidylyltransferase in arabidopsis thaliana at low temperature