• 제목/요약/키워드: Complex I

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Mitochondrial Complex I Inhibition Accelerates Amyloid Toxicity

  • Joh, Yechan;Choi, Won-Seok
    • 한국발생생물학회지:발생과생식
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    • 제21권4호
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    • pp.417-424
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    • 2017
  • Alzheimer's disease (AD) is neurodegenerative disease, characterized by the progressive decline of memory, cognitive functions, and changes in personality. The major pathological features in postmortem brains are neurofibrillary tangles and amyloid beta ($A{\beta}$) deposits. The majority of AD cases are sporadic and age-related. Although AD pathogenesis has not been established, aging and declining mitochondrial function has been associated. Mitochondrial dysfunction has been observed in AD patients' brains and AD mice models, and the mice with a genetic defect in mitochondrial complex I showed enhanced $A{\beta}$ level in vivo. To elucidate the role of mitochondrial complex I in AD, we used SH-SY5Y cells transfected with DNA constructs expressing human amyloid precursor protein (APP) or human Swedish APP mutant (APP-swe). The expression of APP-swe increased the level of $A{\beta}$ protein in comparison with control. When complex I was inhibited by rotenone, the increase of ROS level was remarkably higher in the cells overexpressing APP-swe compared to control. The number of dead cell was significantly increased in APP-swe-expressing cells by complex I inhibition. We suggest that complex I dysfunction accelerate amyloid toxicity and mitochondrial complex I dysfunction in aging may contribute to the pathogenesis of sporadic AD.

아세토니트릴에서 구리와 카드뮴의 2,2'-Bipyridine과 Ethylenediamine 착물에 대한 폴라로그래프적 연구 (Polarographic Behaviors of Copper and Cadmium Complexes with 2,2'-Bipyridine and Ethylenediamine in Acetonitrile)

  • 박두원;이흥락;배준웅
    • 대한화학회지
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    • 제18권3호
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    • pp.202-209
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    • 1974
  • 물 아닌 용매 아세토니트릴에서 구리와 카드뮴의 2,2´-비피리딘(bipy.)과 에틸렌디아민(en.) 착물의 성질의 직류와 교류폴라로그래프로 조사한 결과 각 착물의 전극과정은 아래와 같이 생각된다. $Cu(II)-bipy. \;complex\;{\longrightarrow^{e^-}_{E_{1/2}\risingdotseq+0.1V}}\;Cu(I)-bipy.\;complex\;{\longrightarrow^{e^-}_{E_{1/2}=-0.43V}}\;Cu(Hg)$$Cu(II)-en.\;complex\;{\longrightarrow^{e^-}}\;Cu(I)-en.\;complex\;{times}\;{\longrightarrow^{e^-}_{E_{1/2}=-0.56V}}\;Cu(Hg)$$Cu(II)-bipy. \;complex\;{\longrightarrow^{e^-}_{E_{1/2}=-0.57V}}\;Cu(I)-bipy.\;complex\;{\longrightarrow^{2e^-}_{E_{1/2}=-0.97V}}\;Cd(I)-bipy\;complex$$Cu(II)-en.\;complex\;{\longrightarrow^{e^-}_{E_{1/2}=+0.05V}\;Cu(I)-en.\;complex{\longrightarrow^{e^-}_{E_{1/2}=-0.92V}}\;Cu(Hg)$이상의 모든 파는 학산에만 의존한다. 또 Cu(Ⅰ)-bipy. 착물의 리간드의 수는 2이며, 착물해리상수 $K_d=(1.5{\pm}0.1){\times}10^{-7}$이었다.

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니트로벤젠용액내에서의 브롬화갈륨과 i-브롬화프로필과의 착물형성에 관한 연구 (The Complex Formation of Gallium Bromide with i-Propyl Bromide in Nitrobenzene)

  • 권오천;이동섭;이영훈
    • 대한화학회지
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    • 제29권1호
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    • pp.9-14
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    • 1985
  • 니트로벤젠용액내에서의 i-브롬화프로필의 용해도를 10, 19, 25$^{\circ}C$에서 브롬화갈륨이 있을때와 없을때에 각각 측정하여 보았다. 브롬화갈륨이 존재할때에는 용액내에서 i-브롬화프로필과 브롬화갈륨의 1 : 1 complex, i-C$_3$H$_7Br{\cdot}GaBr_3$가 형성된다. 이 complex형성의 instability constant K는 다음식으로 계산된다. i-C$_3$H$_7Br{\cdot}GaBr_3$ ${\rightleftharpoons}$ i-C$_3$H$_7$Br + $\frac{1}{2}$$Ga_2Br_6$. 또한 이 complex의 해리에 대한 엔탈피, 자유에너지 및 엔트로피도 산출하였다. 따라서 브롬화갈륨과 각 브롬화알킬간의 complex형성의 안정도를 비교 검토한 결과 이들 브롬화알킬의 carboniumion의 안정도와 직접적인 관계가 있다고 본다.

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Chloroplastic NAD(P)H Dehydrogenase Complex and Cyclic Electron Transport around Photosystem I

  • Endo, Tsuyoshi;Ishida, Satoshi;Ishikawa, Noriko;Sato, Fumihiko
    • Molecules and Cells
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    • 제25권2호
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    • pp.158-162
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    • 2008
  • Recent molecular genetics studies have revealed that cyclic electron transport around photosystem I is essential for normal photosynthesis and growth of plants. Chloroplastic NAD(P)H dehydorgenase (NDH) complex, a homologue of the complex I in respiratory electron transport, is involved in one of two cyclic pathways. Recent studies on the function and structure of the NDH complex are reviewed.

KSLV-I 조립콤플렉스 시스템 설계 (KSLV-I Assembly Complex System Design)

  • 진승보;박정주
    • 시스템엔지니어링학술지
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    • 제2권1호
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    • pp.37-41
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    • 2006
  • The KSLV-I satellite launch vehicle will be launched in a space center currently under construction. The Space Center which is an advance post base of space development of Korea is located on Oenaro island in Kohung, South Cholla Province. A Ground Complex of the Space Center consists of an AC(Assembly Complex), a LC(Launch Complex), and a MCC(Mission Control Center). Assembly and test facilities are located in the AC in which stage assembly, integrated assembly, check-up, certification test, and pre-launch test are made effectively. A launch pad, fuel supply facilities, a launch control center and associated supporting facilities are located in the LC, and the MCC has control over the space center. These ground complex facilities have diverse forms of an interface with mechanical device, electric device, and etc. These should also provide optimum condition and performance during launch operation processes of the launch vehicle. This paper introduces the result of R&D for the AC of the ground complex performed during system design period.

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Greening에 따른 유채 자엽의 엽록소-단백질 복합체 형성 (Formation of Chlorophyll-Protein Complexes in Greening Rape Cotyledons)

  • 이진범
    • Journal of Plant Biology
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    • 제26권2호
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    • pp.91-99
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    • 1983
  • The formation of chlorophyll-protein complexes (CP-complexes) during the greening of rape cotyledons (Brassica napus cv. Yongdang) was investigated by the SDS-polyacrylamide gel electrophoresis. The total chlorophyll content and Chl a/b ratio were also determined. In addition, the effects of dark treatment on the CP-complex patterns during greening have been examined with respect to their photosynthetic electron transport activity. Greening has brought about the increasein total chlorophyll content and the decrease in Chl a/b ratio, but there have been no changes in Chl a/b ratio after 24 hrs of greening. The light-harvesting chlorophyll a/b-protein complex (LHCP-complex0 was predominant during the initial greening period. Thereafter, the amout of chlorophyll a-protein complex (CP I-complex) was gradually increased. Twenty-four-hr dark treatment immediately after illumination for 6 hrs and 12 hrs resulted in the increase of the Chl a/b ration and the CP I complex, otherwise the decrease of the LHCP-complex. The LHCP/CP I ratio was gradually decreased with further greening, and appeared no change after 48 hrs illumination. The investigation of the photosynthetic electron transport activity indicated that photosystem (PS) II activity (H2Olongrightarrowp-PD*+FeCy**) did not change, but the activity of PS I was increased suddenly due to the dark treatment. The data suggests that the increase of CP I-complex may result in that of P-700, that is, the increase of PS I activity.

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디메틸술폭시드 속에서 1,5-디페닐카르보히드라지드의 카드뮴 (II) 및 구리 (II) 착물에 대한 폴라로그래피적 거동 (Polarographic Behavior of Cadmium (II) and Copper (II) Complexes of 1,5-Diphenylcarbohydrazide in Dimethylsulfoxide)

  • 최칠남
    • 대한화학회지
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    • 제30권1호
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    • pp.51-56
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    • 1986
  • 디메틸술폭시드 속에서 카드뮴(II)과 구리(II)의 1,5-diphenylcarbohydrazide 錯物의 性質을 直流 폴라로그래프로 調査한 結果 各 錯物의 電極過程은 다음과 같이 생각된다. Cd(II)${\cdot}$DPH Complex$\frac{e^-}{(E_{\frac{1}{2}}=-0.12V)}$${\to}$Cd(I)${\cdot}$DPH Complex. Cd(I)${\cdot}$DPH Complex$\frac{e^-}{(E_{\frac{1}{2}}=-0.74V)}$${\to}$ Cd(Hg) + nDPH. Cu(II)${\cdot}$DPH Complex$\frac{e^-}{(E_\frac{1}{2}=-0.44V)}$${\to}$Cu(I)${\cdot}$DPH Complex. Cu(I)${\cdot}$DPH Complex$\frac{e^-}{(E_{\frac{1}{2}}=-0.84V)}$${\to}$Cu(Hg) + nDPH. 모든 波는 擴散에만 依存하고, 또 Cd(I)${\cdot}$DPH 착물의 ligand의 자리수는 2이며, 錯物의 解離常數 Kd는 5.12 ${\times}10^{-8}$이었다. 이들 各 錯物의 還元波는 非可逆的이었으며, 디메틸 술폭시드 溶液속에서 錯物들의 還元波는 1電子 2段階임을 알 수 있다.

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Synthesis of a Complex $R^1CR$ filter with finite transmission zeros

  • Kikuchi, Hidehiro;Ishibashi, Yukio
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2002년도 ITC-CSCC -3
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    • pp.1863-1866
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    • 2002
  • This paper describes synthesis of a complex R$^{i}$ CR filter with a finite transmission zero except zero frequency. First, a new kernel function is proposed. Secondly, how to determine the element values included in the R$^{i}$ CR filter is described. A fifth-order R$^{i}$ CR filter is designed. Finally, the sensitivity property of the proposed filter is evaluated through computer simulation.

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Structural Analysis and Single-Crystal EPR Study of Dimeric Cu(I) Complex with TTF Derivative

  • Kwon, Sun-Young;Seo, Young-Joo;Lee, Yang-Joo;Noh, Dong-Youn;Lee, Hong-In
    • 한국자기공명학회논문지
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    • 제8권2호
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    • pp.86-95
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    • 2004
  • A Cu(I) complex with an asymmetric TTF derivative (CET-EDTTTF) is prepared from the slow-diffusion method using CET-EDTTTF and Cu(I)Br solutions and characterized by X-ray crystallography and EPR spectroscopy. Structural analysis shows Cu(I) ions are tetrahedrally coordinated to two bridging bromides, one terminal bromide, and one S atom from CET-EDTTTF. Detailed geometrical and EPR analysis identified that the dimmer molecule contains [Cu$_2Br_4]^{2-}$ anion between two [CET-EDTTTF]$^+$ radical cations. Single-crystal EPR investigation of the complex reveals that the ganisotropy is unusually big, compared to those of the previously reported TTF+ cation radicals, implying that there is significant contribution of the Cu d-orbital to the HOMO of the complex.

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Preparation and Characterization of Enrofloxacin/Carbopol Complex in Aqueous Solution

  • Chun, Myung-Kwan;Choi, Hoo-Kyun
    • Archives of Pharmacal Research
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    • 제27권6호
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    • pp.670-675
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    • 2004
  • Since the bitter taste of enrofloxacin apparently limit the patient compliance in the oral formulations of the antibacterial agent, the masking of the taste is essential for the improvement of the therapeutic effectiveness. Therefore, this study was carried out to examine the feasibility of taste masking of enrofloxacin by the retardation of its dissolution rate using the formation of complex between the drug and Carbopol. The complexation between Carbopol and enrofloxacin was confirmed by turbidity, UV spectrophotometry, wide angle X-ray diffraction, and differential scanning calorimetry. The enrofloxacin content in the complexes was 34% (Carbo-enrofloxacin complex I) and 57% (Carbo-enrofloxacin complex II) depending on the prepara-tion method. The dissolution rate of enrofloxacin from the complex increased as the pH was reduced. The dissolution rate of enrofloxacin from the Carbo-enrofloxacin complex I was significantly lower than that of the enrofloxacin powder. Therefore, these observations suggest that Carbo-enrofloxacin complex I can be used to mask the taste of enrofloxacin.