공영윤 교수
Young-woon Kong
서울대학교 · 생화학·유전·분자생물학
연구실 소개
공영윤 교수의 연구실은 Notch 신호전달 경로와 관련된 E3 유비퀴틴 리가제, 특히 Mib1의 기능을 중심으로 면역계 발달, 림프절 형성, 신장 수집관 발달 등 다배엽 기원의 조직 형성 메커니즘을 규명하고 있습니다. 또한 RANKL/OPGL 신호 경로가 골 대사뿐 아니라 유방선 발달과 면역세포 조절에 미치는 영향을 연구하며, 세포 사멸 및 신호 전달의 분자 기전을 탐구하고 있습니다. 특히 세포골격 재편성과 세포 사멸 조절을 연결하는 Vav 단백질의 기능도 핵심 연구 주제입니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
15The TNF-family molecule osteoprotegerin ligand (OPGL; also known as TRANCE, RANKL or ODF) has been identified as the osteoclast differentiation factor and a regulator of T cell-dendritic cell interactions in the immune system. Surprisingly, the same molecule was identified as a crucial factor in early lymphocyte development and lymph node organogenesis. We will discuss the role of OPGL in bone remodelling and the immune system.
Our data provide the first evidence that Mib1 is essential for Jagged as well as Deltalike ligand-mediated Notch signaling in mammalian development, while Neur1, Neur2, and Mib2 are dispensable.
The heterogeneous cellular composition of the mammalian renal collecting duct enables regulation of fluid, electrolytes, and acid-base homeostasis, but the molecular mechanism of its development has yet to be elucidated. The Notch signaling pathway is involved in cell fate determination and has been implicated in proximal-distal patterning in the mammalian kidney. To investigate the role of Notch signaling in renal collecting duct development, we generated mice in which Mind bomb-1 (Mib1), an E3
The zebrafish gene, mind bomb (mib), encodes a protein that positively regulates of the Delta-mediated Notch signaling. It interacts with the intracellular domain of Delta to promote its ubiquitination and endocytosis. In our search for the mouse homologue of zebrafish mind bomb, we cloned two homologues in the mouse genome: a mouse orthologue (mouse mib1) and a paralogue, named mind bomb-2 (mib2), which is evolutionarily conserved from Drosophila to human. Both Mib1 and Mib2 have an E3 ubiquiti
Receptor activator of NF-kappaB ligand (RANKL) is a key regulator for mammary gland development during pregnancy. RANKL-deficient mice display impaired development of lobulo-alveolar mammary structures. Similar mammary gland defects have been reported in mice lacking Id2. Here we report that RANKL induces the proliferation of mammary epithelial cells via Id2. RANKL triggers marked nuclear translocation of Id2 in mammary epithelial cells. In vivo studies further demonstrated the defective nuclear
The protooncogene Vav functions as a GDP/GTP exchange factor (GEF) for Rho-like small GTPases involved in cytoskeletal reorganization and cytokine production in T cells. Gene-targeted mice lacking Vav have a severe defect in positive and negative selection of T cell antigen receptor transgenic thymocytes in vivo, and vav-/- thymocytes are completely resistant to peptide-specific and anti-CD3/anti-CD28-mediated apoptosis. Vav acts upstream of mitochondrial pore opening and caspase activation. Bio
Whether regulatory T cells could suppress the immune responses to an unrelated Ag and could induce tolerance to that Ag was investigated. In female B6 (I-Ab) mice tolerized to MHC class II I-Abm12 (bm12) alloantigen by cyclophosphamide-induced system, regulatory T cells specific for bm12 Ag were induced. These regulatory T cells suppressed in vivo immune responses to an unrelated Ag (male Ag) that was co-expressed with bm12 Ag on the same graft. However, the immune responses to male Ag suppresse
Although terminal differentiation of intestinal epithelium is essential for the efficient digestion and absorption of nutrients, little is known about the molecular mechanisms underlying this process. Recent studies have shown that Elf3 (E74-like factor 3), a member of the ETS transcription factor family, has an essential role in the terminal differentiation of absorptive enterocytes and mucus-secreting goblet cells. Here, we demonstrated that Crif1 (CR6-interacting factor 1) functions as transc
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