• 제목/요약/키워드: Cytoplasmic Microtubule

검색결과 14건 처리시간 0.022초

29-kDa FN-f inhibited autophagy through modulating localization of HMGB1 in human articular chondrocytes

  • Hwang, Hyun Sook;Choi, Min Ha;Kim, Hyun Ah
    • BMB Reports
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    • 제51권10호
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    • pp.508-513
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    • 2018
  • Fibronectin fragments found in the synovial fluid of patients with osteoarthritis (OA) induce the catabolic responses in cartilage. Nuclear high-mobility group protein Box 1 (HMGB1), a damage-associated molecular pattern, is responsible for the regulation of signaling pathways related to cell death and survival in response to various stimuli. In this study, we investigated whether changes induced by 29-kDa amino-terminal fibronectin fragment (29-kDa FN-f) in HMGB1 expression influences the pathogenesis of OA via an HMGB1-modulated autophagy signaling pathway. Human articular chondrocytes were enzymatically isolated from articular cartilage. The level of mRNA was measured by quantitative real-time PCR. The expression of proteins was examined by western blot analysis, immnunofluorescence assay, and enzyme-linked immunosorbent assay. Interaction of proteins was evaluated by immunoprecipitation. The HMGB1 level was significantly lower in human OA cartilage than in normal cartilage. Although 29-kDa FN-f significantly reduced the HMGB1 expression at the mRNA and protein levels 6 h after treatment, the cytoplasmic level of HMGB1 was increased in chondrocytes treated with 29-kDa FN-f, which significantly inhibited the interaction of HMGB1 with Beclin-1, increased the interaction of Bcl-2 with Beclin-1, and decreased the levels of Beclin-1 and phosphorylated Bcl-2. In addition, the level of microtubule-associated protein 1 light chain 3-II, an autophagy marker, was down-regulated in chondrocytes treated with 29-kDa FN-f, whereas the effect was antagonized by mTOR knockdown. Furthermore, prolonged treatment with 29-kDa FN-f significantly increased the release of HMGB1 into the culture medium. These results demonstrated that 29-kDa FN-f inhibits chondrocyte autophagy by modulating the HMGB1 signaling pathway.

개불(Urechis unicinctus) Sperm Ball과 정자의 미세구조와 금 입자 면역 반응에 의한 $\alpha-Tubulin$의 분포 (The Fine Structure of the Sperm Ball and Sperm of Urechis unicinctus and Immunogold Localization of $\alpha-Tubulin$)

  • 신길상
    • Applied Microscopy
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    • 제28권2호
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    • pp.193-205
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    • 1998
  • The Urechis unicinctus sperm and spermatogenic cells prepared from the testis are investigated to identify $\alpha-tubulin$ of axoneme microtubules using mouse monoclonal $anti-\alpha-tubulin$ as the first Ab and Gold(10nm) conjugated goat anti-mouse IgG as the Ab marker. The Ag-Ab reaction analyzed excellently the localization of $\alpha-tubulin$ and the gold particles incorporated with the proximal and distal centrioles, manchette microtubules, and flagellum. The gold particles can be also observed in the spermatogenic cells while the cells are still in sperm ball which is composed of a somatic cell and spermatogenic cells. The sperm ball is the functional unit of sperm production in U unicinctus testis. The spermatids are developed from the spermatogenic cells in the sperm ball and released into the testis cavity through a cortical cytoplasmic opening. The spermatid architectures are similar with the mature sperm of the testis cavity in aspects of shape of discoid acrosome, degree of nuclear condensation and ring type of mitochondrion. However, the distal centriole connecting with the flagella can be observed from the mature sperm while the both proximal and distal centrioles reveal only in the spermatids. The proximal centriole is directly connected with nuclear outer membrane during the stage of nuclear condensation and oriented perpendicularly to the distal centriole whose axis coinciding with the longitudinal axis of the spermatozoon. There are indications that the distal centriole is intimately associated with the polymerization of the flagellum. The manchette microtubules appear during spermatid development but the mature sperm have round head and no conspicuous middle piece.

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Glutamate-rich 4와 kinesin superfamily protein 5A와의 결합 (Glutamate-rich 4 Binds to Kinesin Superfamily Protein 5A)

  • 표세영;정영주;박성우;서미경;이원희;엄상화;김상진;김무성;이정구;석대현
    • 생명과학회지
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    • 제33권1호
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    • pp.1-7
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    • 2023
  • 세포내 운반체는 kinesin과 dynein과 같은 미세소관 분자 모터단백질에 의하여 운반된다. Kinesin은 분자 모터단백질의 큰 그룹을 형성하며, kinesin-1은 미세소관 위를 정방향으로 세포내 소기관, 단백질 복합체, 그리고 mRNAs을 운반한다. Kinesin-1은 kinesin superfamily protein (KIF) 5A, 5B, 그리고 5C (또 다른 명칭으로 kinesin장쇄) 그리고 kinesin 단쇄로 구성되어져 있다. Kinesin-1은 KIF5s의 carboxyl (C)-말단 부위를 통하여 다양한 단백질과 결합한다는 사실은 알려져 있지만, 결합단백질에 대하여서는 아직 충분히 밝혀지지 않았다. 본 연구에서는 KIF5A의 C-말단 특정영역과 결합하는 단백질을 효모 two-hybrid system을 사용하여 탐색한 결과, Glutamate-rich 4 (ERICH4)를 분리하였다. ERICH4는 KIF5A의 C-말단 특정영역과 결합하지만, KIF5B와 KIF3A (kinesin-2의 모터단백질)와는 결합하지 않았다. 그리고 KIF5A는 ERICH4의 다른 isoform인 ERICH1과는 결합하지 않았다. 또한 KIF5A은 GST-ERICH4, GST-ERICH4-amino (N)-말단과는 결합하지만 GST-ERICH4-C말단과 GST와는 결합하지 않았다. HEK-293T 세포에 ERICH4와 KIF5A을 발현시켰을 때 ERICH4와 KIF5A는 세포 내의 같은 부위에서 발현하며, ERICH4을 면역침강한 결과 KIF5A와 KLC은 같이 침강하였다. 이러한 결과들은 ERICH4는 kinesin-1이 운반하는 수송체와 KIF5A와의 결합에 매개단백질로의 역할의 가능성을 시사한다.

Remifentanil Protects Human Keratinocyte Through Autophagic Expression

  • Kim, Eok Nyun;Park, Chang Hoon;Woo, Mi Na;Yoon, Ji Young;Park, Bong Soo;Kim, Yong Ho;Kim, Cheul Hong
    • 대한치과마취과학회지
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    • 제14권2호
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    • pp.101-106
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    • 2014
  • Background: Remifentanil, an ultra-short-acting mu-opioid receptor agonist, is unique from other opioids because of its esterase-based metabolism, minimal accumulation, and very rapid onset and offset of clinical action. Remifentanil can prevent the inflammatory response and can suppress inducible nitric oxide synthase expression in a septic mouse model. However, the effects of remifentanil on human keratinocyte and autophagy have yet to be fully elucidated during hypoxia-reoxygenation. Here we investigated whether remifentanil confers protective effect against hypoxia-reoxygenation in human keratinocyte and, if so, whether autophagy mediates this effect. Methods: The human keratinocytes were cultured under 1% oxygen tension. The cells were gassed with 94% $N_2$, and 5% $CO_2$ and incubated for 24 h at $37^{\circ}C$. To determine whether the administration of affects human keratinocytes hypoxia-reoxygenation injury, cells were then exposed to various concentrations of remifentanil (0.01, 0.1, 0.5 and 1 ng/ml) for 2 h. After remifentanil treatment, to simulate reoxygenation and recovery, the cells were reoxygenated for 12 h at $37^{\circ}C$. Control group did not receive remifentanil treatment. Normoxia group did not receive hypoxia and remifentanil treatment for 36 h. 3-MA group was treated 3-methyladenine (3-MA) for 1h before remifentanil treatment. Cell viability was measured using a quantitative colorimetric assay with MTT, showing the mitochondrial activity of living cells. Cells were stained with fluorescence and analyzed with Western blot analysis to find out any relations with activation of autophagy. Results: Prominent accumulation of autophagic specific staining MDC was observed around the nuclei in RPT group HaCaT cells. Similarly, AO staining, red fluorescent spots appeared in RPT group HaCaT cells, while the Normoxia, control and 3-MA groups showed mainly green cytoplasmic fluorescence. We here examined activation of autophagy related protein under H/R-induced cells by Western blotting analysis. Atg5, Beclin-1, LC3-II (microtubule-associated protein 1 light chain 3 form II) and p62 was elevated in RPT group cells. But they were decreased when autophagy was suppressed by 3-MA (Fig. 5). Conclusions: Although the findings of this study are limited to an in vitro interpretation, we suggest that remifentanil may have a beneficial effect in the recovery of wound from hypoxia-reoxygenation injury.