• 제목/요약/키워드: cell adhesion proteins

검색결과 128건 처리시간 0.023초

The Effect of Fluid Shear Stress on Endothelial Cell Adhesiveness to Modified Polyurethane Surfaces

  • Gilson Khang;Lee, Sang-Jin;Lee, Young-Moo;Lee, Jin-Ho;Lee, Hai-Bang q
    • Macromolecular Research
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    • 제8권4호
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    • pp.179-185
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    • 2000
  • Generally vascular grafts with a relatively large inner diameter (> 5 mm) have been successfully employed for replacement in the human body. However, the use of small diameter grafts is limited, because these grafts rapidly occlude due to the thrombosis. The ideal blood-contacting surface of a prosthesis would be an endothelial cell (EC) lining, because the confluent monolayer of healthy ECs that culture natural blood vessels represents the ideal nonthrombogenic surface. For vascular graft application, the stable EC adhesion on surface under How conditions is very important. In this study, the adhesive strength of ECs attached on polymer surfaces coated with collagen type IV (Col IV), fibronectin (Fn), laminin (Ln), and treated with corona was investigated onto polyurethane (PU) films. The EC-attached PU surfaces were mounted on parallel-plate flow chambers in a How system prepared for cell adhesiveness test. Three different shear stresses (100, 150, and 200 dyne/㎠) were applied to the How chambers and each shear stress was maintained for 120 min to investigate the effect of shear stress and surface treatment condition on the EC adhesion strength. It was observed that the EC adhesion strength on the surface-modified PU films was in the order of Ln≡Fn > Col IV > corona 》 control. More than 70% of the adhered cells were remained on surface-modified PU surface after applying the shear stress,200 dyne/㎠ for 2 hrs, whereas the cells were completely detached on the control PU surface within 10 min after applying the same shear stress. It seems that the type of adsorbed proteins and hydrophilicitv onto the PU surfaces play very important roles for cell adhesion strength.

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Association between the simultaneous decrease in the levels of soluble vascular cell adhesion molecule-1 and S100 protein and good neurological outcomes in cardiac arrest survivors

  • Kim, Min-Jung;Kim, Taegyun;Suh, Gil Joon;Kwon, Woon Yong;Kim, Kyung Su;Jung, Yoon Sun;Ko, Jung-In;Shin, So Mi;Lee, A Reum
    • Clinical and Experimental Emergency Medicine
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    • 제5권4호
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    • pp.211-218
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    • 2018
  • Objective This study aimed to determine whether simultaneous decreases in the serum levels of cell adhesion molecules (intracellular cell adhesion molecule-1 [ICAM-1], vascular cell adhesion molecule-1 [VCAM-1], and E-selectin) and S100 proteins within the first 24 hours after the return of spontaneous circulation were associated with good neurological outcomes in cardiac arrest survivors. Methods This retrospective observational study was based on prospectively collected data from a single emergency intensive care unit (ICU). Twenty-nine out-of-hospital cardiac arrest survivors who were admitted to the ICU for post-resuscitation care were enrolled. Blood samples were collected at 0 and 24 hours after ICU admission. According to the 6-month cerebral performance category (CPC) scale, the patients were divided into good (CPC 1 and 2, n=12) and poor (CPC 3 to 5, n=17) outcome groups. Results No difference was observed between the two groups in terms of the serum levels of ICAM-1, VCAM-1, E-selectin, and S100 at 0 and 24 hours. A simultaneous decrease in the serum levels of VCAM-1 and S100 as well as E-selectin and S100 was associated with good neurological outcomes. When other variables were adjusted, a simultaneous decrease in the serum levels of VCAM-1 and S100 was independently associated with good neurological outcomes (odds ratio, 9.285; 95% confidence interval, 1.073 to 80.318; P=0.043). Conclusion A simultaneous decrease in the serum levels of soluble VCAM-1 and S100 within the first 24 hours after the return of spontaneous circulation was associated with a good neurological outcome in out-of-hospital cardiac arrest survivors.

상아모세포의 I 형 아교질에 대한 부착 (THE ADHESION OF ODONTOBLAST TO TYPE I COLLAGEN)

  • 안명기;정태성;김신
    • 대한소아치과학회지
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    • 제37권3호
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    • pp.308-316
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    • 2010
  • 상아모세포는 부착분자들을 이용하여 기질에 부착하는 세포이며, 인테그린과 같은 부착분자들이 일련의 세포와 세포외기질을 인지하는 신호전달분자로 알려져 있다. 본 연구의 목적은 상아모세포(MDPC-23 세포)와 I형 아교질과의 상호작용과 TGF-${\beta}1$과 TNF-${\alpha}$가 세포부착분자의 발현에 미치는 영향을 알아보기 위해 시행하였다. 본 연구에서 MDPC-23 세포는 농도의존적으로 I형 아교질에 부착했으며, 면역형광염색법에서 MDPC-23 세포가 아교질에 부착할 때, 국소부착점에서 인테그린 ${\alpha}1$, ${\alpha}2$, CD44, FAK 그리고 paxillin의 발현양상을 관찰할 수 있었다. 싸이토카인 TGF-${\beta}1$은 MDPC-23 세포의 아교질에 대한 부착성 및 인테그린 ${\alpha}1$, ${\alpha}2$와 chondroitin sulfate의 발현을 증가시켰으며, RT-PCR의 결과에서는 인테그린 ${\alpha}1$의 mRNA의 양이 TGF-${\beta}1$에 의해서 증가되었음을 확인하였다. 결론적으로 MDPC-23 세포는 아교질에 부착 친화성을 갖고 있으며, 부착 시에 인테그린 ${\alpha}1$, ${\alpha}2$와 CD44 그리고 chondroitin sulfate와 같은 부착분자들이 관여한다. 그리고 TGF-${\beta}1$은 인테그린 ${\alpha}1$, ${\alpha}2$ 그리고 chondroitin sulfate와 같은 부착분자의 발현을 증가시켰다.

Regulated Expression of Nebulin by Transfection of Green Fluorescent Protein-Tagged Nebulin Fragments in Cultured Chicken Myoblast

  • Park, Su-Jung;Kim, Ji-Hee;Ko, Han-Suk;Kim, Chong-Rak;Kim, Han-Do;Kang, Ho-Sung
    • 대한의생명과학회지
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    • 제7권4호
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    • pp.167-172
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    • 2001
  • Nebulin is an approximately 700 kDa filamentous protein in vertebrate skeletal muscle. It binds to the Z line and also binds side-by-side to the entire thin actin filament in a sarcomere. The correlation of nebulin size with thin filament length have led to the suggestion that nebulin acts as a molecular ruler for the length of thin filaments. The C-terminal part of human nebulin is anchored in the sarcomeric Z-disk and contains an SH3 domain. SH3 domains have been identified in an ever-increasing number of proteins important for a wide range of cellular processes, from signal transduction to cytoskeleton assembly and membrane localization. However, the exact physiological role of SH3 domains remains, in many cases, unclear. To explore the role of nebulin SH3 in the cytoskeletal rearrangement that accompanies myoblast differentiation, we transfected sense and antisense nebulin SH3 domain fused to enhanced green fluorescent protein in myoblast. Cells expressing nebulin SH3 fragment showed decrease of cell-cell adhesion, and cells transfected with antisense nebulin SH3 gene showed a rounded cell morphology and loss of cell-matrix adhesion. No alteration in cell shape and differentiation were observed in control cells expressing enhanced green fluorescent protein. Perturbation of nebulin altered the cell shape and disrupted cell adhesion in myoblast, demonstrating that nebulin can affect cytoskeleton rearrangement.

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종양괴사인자에 의하여 유도된 혈관내피세포의 Cell Adhesion Molecules 발현을 억제시키는 플라보노이드 선별 (Selection of Flavonoids Inhibiting Expression of Cell Adhesion Molecules Induced by Tumor Necrosis Factor- a in Human Vascular Endothelial Cells)

  • 최정숙;최연정;박성희;이용진;강영희
    • 한국식품영양과학회지
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    • 제31권6호
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    • pp.1134-1141
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    • 2002
  • 염증성 cytokines의 분비 또는 혈관손상으로 인한 백혈구의 adhesion과 transmigration을 통하여 죽상경화과정이 시발되는데, 본 연구에서는 이러한 죽상경화의 초기과정에서 플라보노이드가 억제작용을 발휘하는 지를 규명하고자 하였다. 본 연구에서는 화학적인 구조가 서로 다른 플라보노이드를 사용하여 화학적인 구조와 항동맥경화작용과의 상관성을 착인하였다. TNF-$\alpha$는 혈관내피세포를 활성화시켜 THP-1 단핵구의 adhesion을 유의적으로 증가시켰다. 여러형태의 플라보노이드를 전처리하고 TNF-$\alpha$를 가하여 혈관내피세포를 활성화 시 켰을 때, flavonols인 quercetin과 flavones의 luteolin과 apigenin은 THP-1 단핵구의 adhesion억제효과를 보여주었다. 그러나, catechins과 flavanones의 플라보노이드는 이러한 억제효과를 전혀 보여주지 못하였다. 이러한 adhesion 억제작용을 가지는 플라보노이드는 CAMs 단백질의 발현도 차단시킨다는 것을 확인할 수 있었다. Quercetin, luteolin과 apigenin은 TNF-$\alpha$에 의하여 증가된 VCAM-1, ICAM-1 및 E-selectin의 단백질 발현을 일률적으로 감소 또는 차단시켰다. 그 대신, 단핵구의 adhesion을 차단시키지 못한 (-)epigallo-catechin gallate와 (+)catechin은 TNF-$\alpha$에 의한 이러한 CAMs의 발현을 전혀 억제시키지 못하였다. 또한 quercetin, luteolin과 apigenin의 CAMs단백질 발현 억제작용은 유전자 전사단계에서 mRNA의 down-regulation으로 인하여 나타난다는 사실을 알 수 있었다. 결론적으로 quercetin, luteolin, apigenin과 같은 플라보노이드는 TNF-$\alpha$와 같은 염증성 cytokines에 의한 단핵구의 adhesion을 혈관내피세포의 CAMs 단백질 발현을 억제하므로서 차단시킨다는 것이 확인되었다. 여기서 모든 플라보노이드가 이러한 활성을 다 지니고 있지 않아서 화학적인 구조와 초기 항동맥경화작용에는 서로 연관성이 있다는 것이 제시되었다. 또한, 선별된 플라보노이드의 초기 항동맥경화작용은 활성산소를 소거하는 플라보노이드의 항산화능과는 무관한 것 같다고 할 수 있다.

Fibrobacter succinogenes, a Dominant Fibrolytic Ruminal Bacterium: Transition to the Post Genomic Era

  • Jun, H.S.;Qi, M.;Ha, J.K.;Forsberg, C.W.
    • Asian-Australasian Journal of Animal Sciences
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    • 제20권5호
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    • pp.802-810
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    • 2007
  • Fibrobacter succinogenes, a Gram-negative, anaerobic ruminal bacterium is a major fibre digesting species in the rumen. It intensively degrades plant cell walls by an erosion type of mechanism, burrowing its way through the complex matrix of cellulose and hemicellulose with the release of digestible and undigested cell wall fragments. The enzymes involved in this process include a combination of glucanases, xylanases, arabinofuranosidase(s) and esterases. The genome of the bacterium has been sequenced and this has revealed in excess of 100 putative glycosyl hydrolase, pectate lyase and carbohydrate esterase genes, which is greater than the numbers reported present in other major cellulolytic organisms for which genomes have been sequenced. Modelling of the amino acid sequences of two glycanases, CedA and EGB, by reference to crystallized homologs has enabled prediction of the major features of their tertiary structures. Two dimensional gel electrophoresis in conjunction with mass spectroscopy has permitted the documentation of proteins over expressed in F. succinogenes grown on cellulose, and analysis of the cell surfaces of mutant strains unable to bind to cellulose has enabled the identification of candidate proteins with roles in adhesion to the plant cell wall substrate, the precursor to cellulose biodegradation.

난소의 황체협막세포에서 E-cadherin, N-cadherin과 세포부착에 미치는 Prostaglandin F2 Alpha의 영향 (Effect of Prostaglandin F2 Alpha on E-cadherin, N-cadherin and Cell Adhesion in Ovarian Luteal Theca Cells)

  • 이상희;정배동;이승형
    • 대한임상검사과학회지
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    • 제51권3호
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    • pp.360-369
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    • 2019
  • Cadherin은 원형질막에 존재하며 세포-세포 결합에 관여하며, 황체 구조 유지에 필수적인 단백질이다. 본 연구에서는 prostaglandin F2 alpha ($PGF2{\alpha}$)가 황체의 협막세포(luteal theca cells, LTCs)의 E-cadherin, N-cadherin 및 세포-세포부착에 미치는 영향에 대해서 수행하였다. 황체세포는 소의 황체중기 조직으로부터 분리하였으며, 황체세포 중에서 mesenchymal 세포 형태학적 특성을 가지는 세포만을 분리하여 LTCs로 판단하였다. 이 후 steroidogenic 기능 및 혈관세포 유무를 판단하기 위해 $3{\beta}$-HSD 및 VEGF2R mRNA 발현을 확인하였으며, E-cadherin 및 N-cadherin mRNA를 사용하여 LTCs 내 cadherin의 존재여부를 판단하였다. 또한 0, $10^{-5}$, $10^{-4}$$10^{-3}M$ $PGF2{\alpha}$를 24시간 동안 처리하여 LTCs의 E- 및 N-cadherin 단백질을 관찰한 후 세포-세포 접착 실험을 실시하였다. 그 결과, LTCs에서 $3{\beta}$-HSD mRNA가 발현되었지만, VEGFR2 mRNA는 발현되지 않았으며, E-cadherin 및 N-cadherin mRNA 모두 발현되는 것을 확인하였다. 또한 E-및 N-cadherin 단백질은 $10^{-5}$, $10^{-4}$$10^{-3}M$ $PGF2{\alpha}$를 처리한 LTCs에서 응집되어 발현되는 것을 확인하였으며, $PGF2{\alpha}$에 의해 LTCs의 세포부착 효율이 유의적으로 감소된 것을 확인하였다. 결론적으로 $PGF2{\alpha}$는 LTCs의 E- 및 N-cadherin을 붕괴시켜 세포부착을 감소시켰고, 이러한 결과는 황체퇴행의 새로운 원인을 밝혀 내기 위한 cadherin과 세포부착의 역할을 이해하는데 중요한 자료로 활용될 것으로 판단된다.

Preferential Cytotoxic Effect of Genistein on G361 Melanoma Cells Via Inhibition of the Expression of Focal Adhesion Kinase

  • Park, Sang Rye;Kwak, Hyun-Ho;Park, Bong-Soo;Kim, Gyoo Cheon
    • International Journal of Oral Biology
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    • 제37권4호
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    • pp.189-195
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    • 2012
  • Resistance to the induction of apoptosis is a possible mechanism by which tumor cells can survive anti-neoplastic treatments. Melanoma is notoriously resistant to anti-neoplastic therapy. Previous studies have demonstrated focal adhesion kinase (FAK) overexpression in melanoma cell lines. Given its probable role in mediating resistance to apoptosis, many researchers have sought to determine whether the downregulation of FAK in melanoma cells would confer a greater sensitivity to anti-neoplastic agents. Genistein is a known inhibitor of protein-tyrosine kinase (PTK), which may attenuate the growth of cancer cells by inhibiting the PTK-mediated signaling pathway. This present study was undertaken to investigate the effect of genistein on the expression of FAK and cell cycle related proteins in the G361 melanoma cell line. Genistein was found to have a preferential cytotoxic effect on G361 melanoma cells over HaCaT normal keratinocytes. Genistein decreased the expression of 125 kDa phosphotyrosine kinase and the FAK protein in particular. Genistein treatment did not affect the expression of p53 in G361 cells in which p21 is upregulated. The expression of cyclin B and cdc2 was downregulated by genistein treatment. Taken together, our data indicate that genistein induces the decreased proliferation of G361 melanoma cells via the inhibition of FAK expression and regulation of cell cycle genes. This suggests that the use of genistein may be a viable approach to future melanoma treatments.

다양한 ECM 조건하에서의 세포막 미세영역 부위 국소접착인산화효소 활성의 단일세포 이미징 기반 분석 (Single-Cell-Imaging-Based Analysis of Focal Adhesion Kinase Activity in Plasma Membrane Microdomains Under a Diverse Composition of Extracellular Matrix Proteins)

  • 최규호;장윤관;서정수;김헌수;안상현;한기석;김은혜;김태진
    • 생명과학회지
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    • 제32권2호
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    • pp.148-154
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    • 2022
  • 국소접착인산화효소(FAK)는 국소접착부에서 세포부착, 세포이동, 세포역학적 신호전달 등에 관여한다고 알려져 있다. 그러나 세포 외 기질(ECM)과 상호작용하는 인테그린 막단백질과 함께 위치하는 세포막 미세영역(membrane microdomain)의 종류와 ECM 구성에 따른 FAK 활성은 여전히 불분명하다. 형광 공명 에너지 전달(FRET)을 기반으로 유전적으로 인코딩 된 바이오센서는 세포 내 FAK 신호를 높은 시공간 해상도로 제공할 수 있다. 본 연구에서는 유리, 제1형 콜라겐, 피브로넥틴, 라미닌의 ECM 조건에서 FRET 기반 막 표적 FAK 바이오센서를 사용하여 지질유동섬(Lipid raft) 및 비-지질유동섬(non-Lipid raft)에서 FAK의 활성을 분석하고 시각화 하였다. 흥미롭게도, 지질유동섬에서 라미닌 조건 하의 FAK 활성은 다른 ECM 조건보다 낮았고, 비-지질유동섬에서 FAK 활성은 다른 ECM 조건보다 낮았다. 동일한 ECM 조건 상의 비교에서는 피브로넥틴 조건일 때 지질유동섬에서 비-지질유동섬 보다 높은 FAK 활성이 관측되었다. 따라서 이번 연구는 FAK 활성도가 ECM 유형 및 세포막 미세영역에 따라 특이적으로 조절되는 것을 시각적, 정량적으로 보여준다.

Regulation of SPIN90 by Cell Adhesion and ERK Activation

  • Kim Sung Hyun;Kim Dae Joong;Song Woo Keun
    • 한국미생물학회:학술대회논문집
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    • 한국미생물학회 2004년도 International Meeting of the Microbiological Society of Korea
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    • pp.141-146
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    • 2004
  • SPIN90 was identified to farm molecular complex with $\betaPIX$, WASP and Nck. This complex shows that SPIN90 interacts with Nck in a manner dependent upon cell adhesion to extracellular matrix, but $SPIN90{\cdot}{\beta}PIX{\cdot}WASP$ complex was stable even in suspended cells. This suggests that SPIN90 serves as an adaptor molecule to recruit other proteins to Nck at focal adhesions. SPIN90 was phosphorylated by ERK1, which was, itself, activated by cell adhesion and platelet-derived growth factor. Such phosphorylation of SPIN90 likely promotes the interaction of the $SPIN90{\cdot}{\beta}PIX{\cdot}WASP$ complex and Nck. It thus appears that the interaction of the $SPIN90{\cdot}{\beta}PIX{\cdot}WASP$ complex with Nck is crucial for stable cell adhesion and can be dynamically modulated by SPIN90 phosphorylation that is dependent on cell adhesion and ERX activation. SPIN90 directly binds syndapin I, syndapin isoform II-1 and II-s via its PRD region in vitro, in vivo and also associates with endocytosis core components such as clathrin and dynamin. In neuron and fibroblast, SPIN90 colocalizes with syndapins as puntate form, consistent with a role for SPIN90 in clathrin-mediated endocytosis pathway. Overexpression of SPIN90 N-term inhibits receptor-mediated endocytosis. Interestingly, SPIN90 PRD, binding interface of syndapin, significantly blocks internalization of transferrin, demonstrating SPIN90 involvement in endocytosis in vivo by interacting syndapin. Depletion of endogenous SPIN90 by introducing $\alpha-SPIN90$ also blocks receptor-mediated endocytosis. Actin polymerization could generate farce facilitating the pinch-out event in endocytosis, detach newly formed endocytic vesicle from the plasma membrane or push out them via the cytosol on actin tails. Here we found that SPIN90 localizes to high actin turn over cortical area, actin-membrane interface and membrane ruffle in PDGF treated cells. Overexpression of SPIN90 has an effect on cortical actin rearrangement as filopodia induction and it is mediated by the Arp2/3 complex at cell periphery. Consistent with a role in actin organization, CFP-SPIN90 present in actin comet tail generated by PIP5 $kinase\gamma$ overexpression. Therefore this study suggests that SPIN90 is functional linker between endocytosis and actin cytoskeleton.

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