정호철 교수
Hochul Jeong
이화여자대학교 약학과 · 생화학·유전·분자생물학
연구실 소개
정호철 교수의 연구실은 바이러스성 질환의 예방을 위한 고효율 백신 기반 기술 개발과 함께, 약물 저항성 및 정밀의료의 분자 기반을 탐구하고 있습니다. 특히 바이러스 유사 입자(VLP)를 활용한 백신 공학과 약물 운반 단백질 ABCB1의 기능적 유전자 다형성 분석을 핵심 연구 주제로 삼고 있으며, 정밀의료를 위한 약물 유전체학과 단백질 접힘 메커니즘의 새로운 이해도 함께 발전시키고 있습니다. 이는 전염병 대응과 개인 맞춤형 치료의 실현 가능성을 높이는 데 기여합니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
15Emerging viruses pose a major threat to humans and livestock with global public health and economic burdens. Vaccination remains an effective tool to reduce this threat, and yet, the conventional cell culture often fails to produce sufficient vaccine dose. As an alternative to cell-culture based vaccine, virus-like particles (VLPs) are considered as a highpriority vaccine strategy against emerging viruses. VLPs represent highly ordered repetitive structures via macromolecular assemblies of viral
The human ABCB1 (MDR1)-encoded multidrug transporter P-glycoprotein (P-gp) plays a major role in disposition and efficacy of a broad range of drugs including anticancer agents. ABCB1 polymorphisms could therefore determine interindividual variability in resistance to these drugs. To test this hypothesis we developed a Saccharomyces-based assay for evaluating the functional significance of ABCB1 polymorphisms. The P-gp reference and nine variants carrying amino-acid-altering single nucleotide pol
Emerging viruses pose a major threat to humans and live-stock with global public health and economic burdens. Vac-cination remains an effective tool to reduce this threat, and yet, the conventional cell culture often fails to produce suf-ficient vaccine dose. As an alternative to cell-culture based vaccine, virus-like particles (VLPs) are considered as a high- priority vaccine strategy against emerging viruses. VLPs repre-sent highly ordered repetitive structures via macromolecular assemblies of
Realizing the promise of precision medicine in psychiatry is a laudable and beneficial endeavor, since it should markedly reduce morbidity and mortality and, in effect, alleviate the economic and social burden of psychiatric disorders. This review aims to summarize important issues on pharmacogenomics in psychiatry that have laid the foundation towards personalized pharmacotherapy and, in a broader sense, precision medicine. We present major pharmacogenomic biomarkers and their applications in a
Our results identify the urgent need for public education as well as the potential health disparities in access to PM. This study helps to frame policies for implementing PM in clinical practice.
Protein folding in vivo is extremely intricate and challenging to examine or predict because the conformational changes, including folding, misfolding, and aggregation, are largely influenced by the cellular environment. Traditionally, cellular protein folding has been considered predominantly in the context of the Anfinsen postulate and molecular chaperones. However, accumulating evidence reveals that these models have limitations. In this review we revisit these models, and discuss co-translat
In the processes of protein synthesis and folding, newly synthesized polypeptides are tightly connected to the macromolecules, such as ribosomes, lipid bilayers, or cotranslationally folded domains in multidomain proteins, representing a hallmark of de novo protein folding environments in vivo. Such linkage effects on the aggregation of endogenous polypeptides have been largely neglected, although all these macromolecules have been known to effectively and robustly solubilize their linked hetero
A possible association between the combination of genetic variations in hepatocyte nuclear factor 4α (HNF4α) and constitutive androstane receptor (CAR) and the stable doses of warfarin was examined in patients from the Ewha-Severance Treatment (EAST) Group of Warfarin. Around 42.5% of the overall interindividual variability in warfarin dose requirements was explained by the multivariate regression model; the vitamin K epoxide reductase complex 1 (VKORC1) genotype accounted for 29.6%, the cytochr
Molecular chaperones play an important role in cellular protein-folding assistance and aggregation inhibition. As a different but complementary model, we previously proposed that, in general, soluble cellular macromolecules with large excluded volume and surface charges exhibit intrinsic chaperone activity to prevent aggregation of their connected polypeptides irrespective of the connection type, thereby contributing to efficient protein folding. As a proof of concept, we here demonstrated that
[This corrects the article DOI: 10.1371/journal.pone.0192856.].
A correction to this article has been published and is linked from the HTML and PDF versions of this paper. The error has been fixed in the paper.
In the article by C. Li et al. (2007), the name of the third co-author has been amended to Hotcherl Jeong. Additionally, details of the affiliation and present addresses for Hotcherl Jeong and John Roth have been amended and included respectively.
Abstract Protein-folding assistance and aggregation inhibition by cellular factors are largely understood in the context of molecular chaperones. As an alternative and complementary model, we previously proposed that, in general, soluble cellular macromolecules including chaperones with large excluded volume and surface charges exhibit the intrinsic chaperone activity to prevent aggregation of their connected polypeptides, irrespective of the connection types, and thus to aid productive protein
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