주광식 교수
Kwang Sik Joo
서울대학교 · 의학
연구실 소개
주광식 교수의 연구실은 유전성 망막질환, 청각질환, 신경퇴행성 질환 등 유전적 기반의 퇴행성 질환의 유전자 기반 진단 및 메커니즘 규명을 핵심으로 합니다. 특히 한국인 환자군을 대상으로 한 유전적 변이 분석과 관련된 대규모 유전자 패널 시퀀싱을 통해 유전적 원인을 규명하고, 병태생리학적 연관성과 임상적 의미를 탐색합니다. 또한 신경염증 및 세포 신호전달 경로의 조절 메커니즘을 규명하여, 향후 치료 전략 수립에 기여하고자 합니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
15The initiation of primary cilium assembly entails the docking of ciliary vesicles presumably derived from the Golgi complex to the distal end of the mother centriole. Distal appendages, which anchor the mother centriole to the plasma membrane, are thought to be involved in the docking process. However, little is known about the molecular players and mechanisms that mediate the vesicle-centriole association. Here we report that coiled-coil domain containing 41 (CCDC41) is required for the docking
Background: Because of genetically and phenotypically heterogenous features, identification of causative genes for inherited retinal diseases (IRD) is essential for diagnosis and treatment in coming gene therapy era. To date, there are no large-scale data of the genes responsible for IRD in Korea. The aim of this study was to identify the distribution of genetic defects in IRD patients in Korea. Methods: Medical records and DNA samples from 86 clinically diagnosed IRD patients were consecutively
Our results provide insight on the expansion of audiological spectrum encompassing more than severe SNHL in Korean subjects harboring USH2A variants, suggesting that USH2A should also be included in the candidate gene of cochlear implantation. A specific combination of USH2A variants causing truncating proteins in both alleles could demonstrate more severe audiological phenotype than that of USH2A variants carrying one truncating mutation and one missense mutation, suggesting a possible genotype
There is a large spectrum of clinical findings in Miyake disease, including various onset of disease and VA, whereas the characteristic photoreceptor microstructures were shared in most cases. Two hot spots including amino acid numbers 45 and 1196-1201 in the RP1L1 gene were confirmed in the East Asian population.
Spinocerebellar ataxias (SCAs) are a genetically diverse group of mainly autosomal dominant disorders in which cerebellar disease can occur in isolation or concomitantly with brainstem or retinal abnormalities. Although autosomal dominant cerebellar ataxias have different clinical features and different disease-causing genes, they share a common underlying mutational mechanism—an expanded trinucleotide repeats encoding a tract of glutamine amino acids. Eye movement abnormalities are prominent in
These results demonstrate that ANG reduces the inflammatory response induced by TNF-α or LPS in HCFs through common suppression of IKK-ε-mediated activation of NF-κB. This may support the targeting of immune-mediated corneal inflammation by using ANG.
The ophthalmic risk factors related to the progression of nAMD from intermediate AMD were found to be preexisting nAMD in the fellow eye and RPD. Pachydrusen showed a similar incidence of neovascular change with soft drusen, and was associated with the progression to PCV but not to typical nAMD.
In this study, we investigated the clinical and genetic characteristics of 19 Korean patients with congenital stationary night blindness (CSNB) at two tertiary hospitals. Clinical evaluations, including fundus photography, spectral-domain optical coherence tomography, and electroretinography, were performed. Genetic analyses were conducted using targeted panel sequencing or whole exome sequencing. The median age was 5 (3-21) years at the initial examination, 2 (1-8) years at symptom onset, and 1
FcfVEGF-Trap, despite its lower molecular weight, showed longer half-lives in vitreous and retina/choroid than VEGF-Trap did, suggesting that Fc receptors in ocular tissues contribute to anti-VEGF drug elimination. Truncation or mutation of the Fc region can prolong the intraocular residence time of VEGF-Trap and possibly reduce the number of VEGF-Trap injections required in clinical practice.
LIS1 is implicated in lissencephaly, but altered dosage of LIS1 has been also associated with microcephaly syndromes. Our results suggest that JBTS17 contributes to mitotic progression by interacting with LIS1, and abnormal mitosis is an underlying mechanism of the microcephaly phenotype in JBTS17-related ciliopathies. We propose that understanding extraciliary roles of ciliopathy proteins is important to elucidate pathological mechanisms underlying diverse ciliopathy phenotypes. ANN NEUROL 2019
대표 연구 분야
주광식 교수의 연구를 Nubint에서 더 깊이 살펴보세요
이 연구실의 논문을 앱에서 열어 AI와 함께 읽고, 핵심을 요약하고, 내 글에 인용하세요.