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세포내인자로서의 정교한 기능을 하는 molecular chaperone
권오유,송민호 한국생명과학회 1998 생명과학회지 Vol.8 No.2
Molecular chaperone의 발견은 생명과학자들에게 살아있는 세포 내에서 어떻게 생체활성단백질이 만들어지고 유지되는지에 대한 자극과 함께 그것을 증명하기 위한 실험동기를 부여하였다. 초기에는 Molecular chaperone이 nucleosomes의 assembly에 관여하는 단백질을 설명하기 위하여 사용되었으나, 지금은 기본적인 세포생리기능의 하나인 단백질의 folding과 assembly를 돕는 assistant protein으로 주로 사용된다. 단백질합성 뿐만 아니라 단백질수송, oligomeric structure의 assembly와 disassembly, heat shock을 포함한 각종 내, 외부스트래스에 의해서 변성된 단백질의 세로내분화와 회복에도 Molecular chaperone이 관여하고 있다. 그러나 아직까지는 Molecular chaperone들의 3차구조와 그들간의 상호작용에 관한 정보가 부족하여 크게 진전되지 못하고 있지만, 많은 연구자에 의한 정보축적으로 인하여 빠른 시일 내에 Molecular chaperone에 세포내역할이 분명하게밝혀질 것이다. Discovery of molecular chaperone has stimulate cell biologists and thus made it possible to re-examine the processes whereby proteins achieve and maintain their functional conformations within living cells. the term ‘Molecular chaperone’ was first coined to describe one particular protein involved in the assembly of nucleosomes, but the term has now been extended to describe the function of a wide variety of proteins that assist protein transport across membranes, folding of nascent polypeptide, the assembly and disassembly of oligomeric structures, and the recovery or removal of proteins damaged by various environmental stresses including heat shock. Progress of molecular chaperone research is still limited by the lack of 3-dimensional structural information and detailed interacts with taget proteins in the cell. However, several laboratories around the world are attempting to extend our knowledge on the functions of molecular chaperone, and such efforts seem justified to finally provide the answers to the most burning questions shortly.
권오유,김승환,권기상 대한의생명과학회 2006 Biomedical Science Letters Vol.12 No.2
its molecular properties associated with unfoled protein responses. First, the expression of irp94 mRNA was tested after the reperfusion of the transient forebrain ischemia induction at the central nervous system in three Mongolian gerbils. Second, irp94 expression in PC12 cells, which are derived from transplantable rat pheochromocytoma cultured in the DMEM media, was tested at transcriptional and translational levels. The half life of irp94 mRNA was also determined in PC12 cells. Last, the changes of irp94 mRNA expression were investigated by the addition of various ER stress inducible chemicals (A23187, BFA, tunicamycin, DTT and H2O2) and proteasome inhibitors, and heat shock. High level expression of irp94 mRNA was detected after 3 hours reperfusion in the both sites of the cerebral cortex and hippocampus of the gerbil brain. The main regulation of irp94 mRNA expression in PC12 cells was determined at the transcriptional level. The half life of irp94 mRNA in PC12 cells was approximately 5 hours after the initial translation. The remarkable expression of irp94 mRNA was detected by the treatment of tunicamycin, which blocks glycosylation of newly synthesized polypeptides, and H2O2, which induces apoptosis. When PC12 cells were treated with the cytosol proteasome inhibitors such as ALLN (N-acetyl-leucyl-norleucinal) and MG 132 (methylguanidine), irp94 mRNA expression was increased. These results indicate that expression of irp94 was induced by ER stress including oxidation condition and glycosylation blocking in proteins. Expression of irp94 was increased when the cells were chased after heat shock, suggesting that irp94 may be involved in recovery rather than protection against ER stresses. In addition, irp94 expression was remarkably increased when cytosol proteasomes were inhibited by ALLN and MG 132, suggesting that irp94 plays an important role for maintaining the ERAD (endoplasmic reticulum associated degradation) function.
Endoplasmic Reticulum Stress Up-regulates Ferritin Heavy Chain 1 Expression
권오유,진초이,권기상 대한의생명과학회 2007 Biomedical Science Letters Vol.13 No.2
Ferritin heavy chain 1 (FTH1) is an ubiquitous and highly conserved protein which plays a major role in iron homeostasis. The expression of FTH1 was specifically enhanced under various condition of endoplasmic reticulum (ER) stresses drugs such as Brefeldin A (BFA), DTT (Dithiothreitol), calcium ionophore A23187 and tunicamycin. We firstly report here that ER-stress induces up-regulated expression of FTH1 in FRTL-5 culture thyrocytes.
Thyroglobulin의 소포체내 dimerization
권오유,신기선 한국생명과학회 2003 생명과학회지 Vol.13 No.3
갑상선호르몬의 전구체인 thyroglobulin (Tg)이 어떻게 dimerization이 일어나는지를 조사하였다, 변성 혹은 비변성전기영동법으로 관찰한 결과 새롭게 만들어지기 시작한 Tg는 15분에 처음으로 구조적으로 불안정하지만 folded monomer가 관찰되었다. 그 이후에 monomer가 dimer로 바뀌어 결국 30분에 dimer Tg가 만들어지기 시작하여 40분에는 dimer Tg가 관찰되었다. 최종적으로 60분에 완전하게 dimerization된 Tg가 만들어졌다. The kinetics of dimerization of a newly synthesized thyroglobulin (Tg), the precursor protein in the manufacture of thyroid hormone, was investigated in the endoplasmic reticulum of thyrocytes FRTL-5 cell line. The folded monomeric Tg was first detectable in a conformationally unstable form, from the examination of lysates of pulse labeled cultured thyrocytes by denaturing and nondenaturing gel electrophoresis by 15 min after biosynthesis. The first dimeric Tg was formed by 30 min after; the monomer declined and the dimer progressively increased, and 40 min after remarkable dimeric Tg form was found. Finally, dimerization was complete at 60 min after.