• 제목/요약/키워드: intracellular complex

검색결과 151건 처리시간 0.02초

CTLA-4 항원의 활성 T 세포내 발현의 특성: 세포질내 단백복합체 구성분자의 동정 (Characterization of CTLA-4 Antigen Expression: Identification of Molecules Composing Intracellular CTLA-4 Multiprotein Complex)

  • 임대철;정용훈
    • IMMUNE NETWORK
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    • 제2권1호
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    • pp.35-40
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    • 2002
  • Background: CTLA-4 (Cytotoxic T Lymphocyte associated Antigen 4, CD152) has been known as a homologue of CD28, an accessory molecule providing a key costimulatory signal for successful antigen-driven activations of T lymphocyte. Most of biochemical and cell biological characteristics of the CD152 protein remain unknown while those of CD28 have been characterized in detail. Methods: In this study CD152 expression in both $CD4^+$ and $CD8^+$ PBLs was studied by using flow cytometry. And intracellular CD152 multiprotein complex was purified and used for generating antibodies recognizing proteins composing of intracellular CTLA-4 multi protein complex. Results: Level of surface expression of this molecule was peaked at 2 days of PHA stimulation in flow cytometric analysis. 40~45% of PHA blast cells were $CD152^+$ in both of two subsets at this stage and the level of expression were equivalent in both two subsets. Contrary to this surface expression, intracellular expression was peaked at day 3 and it was preferentially induced in $CD8^+$ cells and about 60% of $CD8^+$ cells were $CD152^+$ at this stage. High molecular weight (>350 kD) intacellular CD152 protein complex purified by using preparative electrophoresis were immunized into rabbits and then 3 different anti-P34PC4, anti-P34PC7 and anti-P34PC8 antibodies were obtained. Using these 3 antibodies two unknown antigens associated with intracellular CD152 multiprotein complex were found and their molecular weights were 54 kD and 75 kD, respectively. Among these, the former was present as 110 kD homodimer in non-reducing condition. Conclusion: It seemed that 34 kD intracellular CD152 molecule forms high molecular weight multiprotein complex at least with 2 proteins of 75 kD monomer and 110 kD homodimer.

Intracellular Trafficking of Transferrin-Conjugated Liposome/DNA Complexes by Confocal Microscopy

  • Lee Sang Mi;Kim Jin-Seok
    • Archives of Pharmacal Research
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    • 제28권1호
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    • pp.93-99
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    • 2005
  • Intracellular trafficking of transferrin-conjugated dimethyldioctadecyl-ammonium bromide liposome $(T_f-liposome)/DNA$ complexes in HeLa cells was studied using the double-labeled fluorescence technique and confocal microscopy. The size of the $T_f-liposome/DNA$ complex was about 367 nm in diameter and the zeta-potential of it at a 5:1 (w/w) ratio was almost neutral. The intracellular pathway of the $T_f-liposome/DNA$ complex, noted as green (FITC), red (rhodamine) or yellow (FITC + rhodamine) fluorescence, was elucidated from the plasma membrane to the endosome (or lysosome), and finally to the nucleus. The results of this study indicate that plasmid DNA enters into the nucleus not only as a free form but as an associated form complexed with $T_f-liposome$. More interestingly, the $T_f-liposome$ undergoes a nuclear location in the form of ordered structures. This could be a very useful piece of information in designing a safe and advanced gene delivery system.

인축적 미생물의 인방출과 세포내 저장물질 합성관계 (Relationship between Phosphorus Release and Intracellular Storage Polymer Synthesis by Phosphorus Accumulating Organisms)

  • 신응배;김미경;홍준혁;공동수
    • 한국물환경학회지
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    • 제20권6호
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    • pp.692-697
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    • 2004
  • Biological phosphorus removal is characterized by complex interactions between different intracellular components of energy as PHA. Therefore, fundamental understanding of the behavior of the intracellular components and their influence on the removal of phosphorus is essential before control strategies to stabilize the proper process. The purpose of this study is to investigate relationship between release of phosphorus and synthesis of intracellular storage polymer. Mass of stored intracellular storage polymer was 21.2 mg PHA/L, 28.8 mg PHA/g MLSS. And phosphorus release/intracellular storage polymer synthesis rate was 1.8545 mg stored polymer/mg Phosphate. In the aerobic phase, mass of PAOs synthesis is 49.37 mg PAOs/L. And PAOs fraction was 6.7-6.9%. Thus intracellular storage polymer synthesis by PAOs is calculated as 493mg PHA/g PAOs.

인간 유방암 세포주 BT-474와 MCF7에서 Bacteroides fragilis Toxin에 의한 E-cadherin 분절과 프로테아좀에 의한 분해 (Bacteroides fragilis Toxin Induces Cleavage and Proteasome Degradation of E-cadherin in Human Breast Cancer Cell Lines BT-474 and MCF7)

  • 강다혜;유상현;홍주은;이기종
    • 대한임상검사과학회지
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    • 제55권1호
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    • pp.37-44
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    • 2023
  • Enterotoxigenic Bacteroides fragilis (ETBF)는 염증성장 질환과 대장암을 유발하며 아연 의존성 metalloprotease인 B. fragilis toxin (BFT)를 분비한다. BFT는 epithelial cell의 E-cadherin을 80 kDa ectodomain과 33 kDa intracellular domain으로 분절을 유도한다. 생성된 E-cadherin intracellular domain은 순차적으로 γ-secretase에 의해 분절되어 28 kDa E-cadherin intracellular fragment은 아직까지 밝혀지지 않는 기작으로 분해된다. 본 연구에서는 BFT 유도 E-cadherin 분절로 인해 생성된 28 kDa E-cadherin intracellular fragment는 proteasome에 의해서 분해된다는 것을 확인하였다. 또한 BFT 유도 E-cadherin 분절 기작이 대장암 세포가 아닌 인간 유방암 세포주 BT-474 세포에서도 동일한 기작으로 일어남을 확인하였다. 마지막으로 staurosporine은 인간 유방암 세포주 MCF7 세포에서 E-cadherin의 분절을 유도하고 γ-secretase에 의한 E-cadherin intracellular domain의 분절이 일어났으나 proteasome에 의한 분해는 일어나지 않았다. 이러한 결과는 ETBF가 서식하는 대장이 아닌 유방에서도 BFT에 의한 E-cadherin 분절이 일어날 수 있으며 ETBF가 대장암 이외의 다른 암에도 관여할 수 있음을 시사한다.

Trifluoperazone 의 심근보호효과 (Myocardial Protective Effect of Trifluoperazine)

  • 류삼렬
    • Journal of Chest Surgery
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    • 제23권1호
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    • pp.1-8
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    • 1990
  • This experiment was carried out under the postulation that activation of an intracellular calcium-calmodulin complex may play an important role in myocardial injury induced by ischemia and reperfusion. Trifluoperazine[TFP], a calmodulin antagonist, was added to the potassium cardioplegic solution and used just before ischemia, and its protective effect from ischemic injury was investigated, using Langendorff rat heart model. TFP group had better post-ischemic functional recovery and lower post-ischemic contracture after 30 minutes of normothermic ischemia. Creatine kinase leakage was also decreased in TFP group but there was no statistical difference between control group and TFP group. We concluded that TFP has some protective effect from myocardial ischemic injury and its effect might be due to prevention of activation of intracellular calcium-calmodulin complex.

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Depression of $Ca^{2+}$ Influx in Complement C5a-stimulated Neutrophils by Calmodulin Inhibitors

  • Ham, Dong-Suk;Kim, Hyun-Ho;Han, Eun-Sook;Lee, Chung-Soo
    • The Korean Journal of Physiology and Pharmacology
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    • 제2권1호
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    • pp.109-117
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    • 1998
  • Role of $Ca^{2+}$/calmodulin complex in intracellular $Ca^{2+}$ mobilization in neutrophils has not been clearly elucidated. In this study, effects of chlorpromazine, trifluoperazine and imipramine on the intracellular $Ca^{2+}$ mobilization, including $Ca^{2+}$ influx, in C5a-activated neutrophils were investigated. Complement C5a- stimulated superoxide production and myeloperoxidase release in neutrophils were inhibited by chlorpromazine, trifluoperazine and imipramine, except no effect of imipramine on myeloperoxidase release. A C5a-elicited elevation of [$Ca^{2+}$]i in neutrophils was inhibited by chlopromazine, trifluoperazine, imipramine, staurosporine, genistein, EGTA, and verapamil but not affected by pertussis toxin. The intracellular $Ca^{2+}$ release in C5a-activated neutrophils was not affected by chlorpromazine and imipramine. Chlorpromazine and imipramine inhibited $Mn^{2+}$ influx by C5a-activated neutrophils. Thapsigargin-evoked $Ca^{2+}$ entry was inhibited by chlorpromazine, trifluoperazine, imipramine, genistein, EGTA and verapamil, while the effect of staurosporine was not detected. The results suggest that $Ca^{2+}$/calmodulin complex is involved in the activation process of neutrophils. The depressive action of calmodulin inhibitors on the elevation of cytosolic $Ca^{2+}$ level in C5a-activated neutrophils appears to be accomplished by inhibition of $Ca^{2+}$ influx from the extracellular medium.

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The Golgi complex: a hub of the secretory pathway

  • Park, Kunyou;Ju, Sungeun;Kim, Nari;Park, Seung-Yeol
    • BMB Reports
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    • 제54권5호
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    • pp.246-252
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    • 2021
  • The Golgi complex plays a central role in protein secretion by regulating cargo sorting and trafficking. As these processes are of functional importance to cell polarity, motility, growth, and division, there is considerable interest in achieving a comprehensive understanding of Golgi complex biology. However, the unique stack structure of this organelle has been a major hurdle to our understanding of how proteins are secreted through the Golgi apparatus. Herein, we summarize available relevant research to gain an understanding of protein secretion via the Golgi complex. This includes the molecular mechanisms of intra-Golgi trafficking and cargo export in the trans-Golgi network. Moreover, we review recent insights on signaling pathways regulated by the Golgi complex and their physiological significance.

A WD40 Repeat Protein, Arabidopsis Sec13 Homolog 1, May Play a Role in Vacuolar Trafficking by Controlling the Membrane Association of AtDRP2A

  • Lee, Myoung Hui;Lee, Sung Hoon;Kim, Heyran;Jin, Jing Bo;Kim, Dae Heon;Hwang, Inhwan
    • Molecules and Cells
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    • 제22권2호
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    • pp.210-219
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    • 2006
  • Dynamin-related protein 2A (AtDRP2A, formally ADL6), a member of the dynamin family, is critical for protein trafficking from the TGN to the central vacuole. However, the mechanism controlling its activity is not well understood in plant cells. We isolated Arabidopsis sec13 homolog1 (AtSeh1) that interacts with AtDRP2A by a yeast two-hybrid screening. AtSeh1 has four WD40 motifs and amino acid sequence homology to Sec13, a component of COPII vesicles. Coimmunoprecipitation and protein pull-down experiments demonstrated specific interaction between AtSeh1 and AtDRP2A. AtSeh1 bound to the pleckstrin homology domain of AtDRP2A in competition with the C-terminal domain of the latter, and this resulted in inhibition of the interaction between AtDRP2A and PtdIns3P in vitro. AtSeh1 localized to multiple locations: the nucleus, the prevacuolar compartment and the Golgi complex. Based on these results we propose that AtSeh1 plays a role in regulating cycling of AtDRP2A between membrane-bound and soluble forms.

Liposome/Tat Complex for Facilitating Genistein Uptake into B16 Melanoma Cells

  • Park, Young-Mi;Kang, Myung-Joo;Moon, Ki-Young;Park, Sang-Han;Kang, Mean-Hyung;Choi, Young-Wook
    • Journal of Pharmaceutical Investigation
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    • 제41권4호
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    • pp.205-210
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    • 2011
  • Genistein (GT), a major isoflavone found in soybeans, has a potent antioxidant effect that protects the skin from UV-induced damages and malignant melanoma. In order to enhance the cellular uptake of GT, liposome/Tat complexes were prepared by an electrostatic interaction of anionic liposome (DMPC/DCP, 9:1 in molar ratio) with Tat peptide (0.02 to 0.08 mole), one of the well-known cell penetrating peptide (CPP). As the amount of Tat increased, the size increased but the zeta potential decreased. In vitro release study with dialysis membrane elicited GT release from liposomal preparations in a controlled manner. The addition of Tat increased GT release, especially for the initial period. In the cellular uptake study by incubating B16 melanoma cells with various liposomal preparations containing GT, B16 melanoma cells demonstrated a time-dependent increase of drug accumulation. Compared to the aqueous GT suspension, intracellular uptake was substantially enhanced by anionic liposomal formulation and further increased by the complex formulation. Therefore, liposome/ Tat complex might be a good candidate for facilitating intracellular drug delivery.

Compartmental Analysis of the Insulin-induced GLUT4 Recruitment in Adipocytes

  • Ryu, Ji-Won;Jung, Chan-Y.
    • BMB Reports
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    • 제34권4호
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    • pp.285-292
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    • 2001
  • Insulin stimulates glucose uptake in muscle and adipose tissue and thus maintains normal blood glucose level in our body. Derangement of this process causes many grave health problems. Insulin stimulates glucose transport primarily by recruiting GLUT4 from its intracellular storage sites to the plasma membrane. The process is complex and involves GLUT4 trafficking through multiple subcellular compartments (organelles) and many protein functions, details of which are poorly understood. This review summarizes a recent development to isolate and characterize the individual intracellular GLUT4 compartments and to illustrate how this compartmental analysis will help to identify the insulin-sensitive step or steps in the insulin-induced GLUT4 recruitment in rat adipocytes. The review does not cover the recent exciting development in identification of many proteins implicated in this process.

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