• 제목/요약/키워드: Intracellular localization

검색결과 87건 처리시간 0.024초

효모세포에서 KEM1::lacZ 융합 단백질의 위치결정 (Localization of a KEM1::lacZ Fusion Protein in Yeast Cells)

  • 김진미
    • 미생물학회지
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    • 제32권1호
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    • pp.12-19
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    • 1994
  • Saccharomyces cerevisiae의 KEMI 유전자는 세포의 영양 상태에 따라 spindle pole body나 microtubules의 기능을 조절하는 것으로 알려져 있다. 이 유전자 산물의 세포내 분포 및 기능을 규명하기 위하여, KEM1::lacZ 융합 유전자를 제조하였다. 즉, 클론된 KEM1 유전자에 대장균의 ${\beta}$-galactosidase 구조유전자를 갖는 mini-Tn10-LUK element를 무작위 삽입한 pool을 제조하고, 이를 분석하여 KEM1의 기능 부위가 약 3.5kb에 해당함을 확인하였고, KEM1의 기능이 살아있는 KEM1::lacZ 융합 유전자의 클론을 선별하였다. 이 클론을 ${\beta}$-galactosidase 항체를 이용한 indirect immunofluorescence 방법으로 분석하여 KEM1::lacZ 융합 단백질이 핵주변에 위치함을 확인하였다.

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C-Terminal Region of Ankyrin-B Interact with Z-Line Portion of Titin

  • Kim, Myong-Shin;Kim, Hyun-Suk;Park, Eun-Ran;Lee, Yeong-Mi;Lee, Min-A;Kim, Ji-Hee;Choi, Jae-Kyong;Ahn, Seung-Ju;Min, Byung-In;Shon, Myeong-Hwan;Choi, Jang-Seok;Kim, Chong-Rak
    • 대한의생명과학회지
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    • 제12권4호
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    • pp.303-310
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    • 2006
  • Ankyrins are a ubiquitously expressed family of intracellular adaptor proteins involved in targeting diverse proteins to specialized membrane domains in both the plasma membrane and the endoplasmic reticulum. We described here that the C-terminal domain of ankyrin-B interact specifically with Z-line portion of titin in yeast two-hybrid analysis, in vitro pull-down assays and localization experiments in COS-7 cells. In this study we provide the first experimental evidence that Z-line portion of titin is necessary for the localization of ankyrin-B and ankyrin-B links between the sarcolemma and the myofibril in costameres.

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Non-classical role of Galectin-3 in cancer progression: translocation to nucleus by carbohydrate-recognition independent manner

  • Kim, Seok-Jun;Chun, Kyung-Hee
    • BMB Reports
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    • 제53권4호
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    • pp.173-180
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    • 2020
  • Galectin-3 is a carbohydrate-binding protein and regulates diverse functions, including cell proliferation and differentiation, mRNA splicing, apoptosis induction, immune surveillance and inflammation, cell adhesion, angiogenesis, and cancer-cell metastasis. Galectin-3 is also recommended as a diagnostic or prognostic biomarker of various diseases, including heart disease, kidney disease, and cancer. Galectin-3 exists as a cytosol, is secreted in extracellular spaces on cells, and is also detected in nuclei. It has been found that galectin-3 has different functions in cellular localization: (i) Extracellular galectin-3 mediates cell attachment and detachment. (ii) cytosolic galectin-3 regulates cell survival by blocking the intrinsic apoptotic pathway, and (iii) nuclear galectin-3 supports the ability of the transcriptional factor for target gene expression. In this review, we focused on the role of galectin-3 on translocation from cytosol to nucleus, because it happens in a way independent of carbohydrate recognition and accelerates cancer progression. We also suggested here that intracellular galecin-3 could be a potent therapeutic target in cancer therapy.

Fraxetin Induces Heme Oxygenase-1 Expression by Activation of Akt/Nrf2 or AMP-activated Protein Kinase α/Nrf2 Pathway in HaCaT Cells

  • Kundu, Juthika;Chae, In Gyeong;Chun, Kyung-Soo
    • Journal of Cancer Prevention
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    • 제21권3호
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    • pp.135-143
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    • 2016
  • Background: Fraxetin (7,8-dihydroxy-6-methoxy coumarin), a coumarin derivative, has been reported to possess antioxidative, anti-inflammatory and neuroprotective effects. A number of recent observations suggest that the induction of heme oxygenase-1 (HO-1) inhibits inflammation and tumorigenesis. In the present study, we determined the effect of fraxetin on HO-1 expression in HaCaT human keratinocytes and investigated its underlying molecular mechanisms. Methods: Reverse transcriptase-PCR and Western blot analysis were performed to detect HO-1 mRNA and protein expression, respectively. Cell viability was measured by the MTS test. The induction of intracellular reactive oxygen species (ROS) by fraxetin was evaluated by 2′,7′-dichlorofluorescin diacetate staining. Results: Fraxetin upregulated mRNA and protein expression of HO-1. Incubation with fraxetin induced the localization of nuclear factor-erythroid-2-related factor-2 (Nrf2) in the nucleus and increased the antioxidant response element-reporter gene activity. Fraxetin also induced the phosphorylation of Akt and AMP-activated protein kinase $(AMPK){\alpha}$ and diminished the expression of phosphatase and tensin homolog, a negative regulator of Akt. Pharmacological inhibition of Akt and $AMPK{\alpha}$ abrogated fraxetin-induced expression of HO-1 and nuclear localization of Nrf2. Furthermore, fraxetin generated ROS in a concentration-dependent manner. Conclusions: Fraxetin induces HO-1 expression through activation of Akt/Nrf2 or $AMPK{\alpha}/Nrf2$ pathway in HaCaT cells.

Computational Identification of Essential Enzymes as Potential Drug Targets in Shigella flexneri Pathogenesis Using Metabolic Pathway Analysis and Epitope Mapping

  • Narad, Priyanka;Himanshu, Himanshu;Bansal, Hina
    • Journal of Microbiology and Biotechnology
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    • 제31권4호
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    • pp.621-629
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    • 2021
  • Shigella flexneri is a facultative intracellular pathogen that causes bacillary dysentery in humans. Infection with S. flexneri can result in more than a million deaths yearly and most of the victims are children in developing countries. Therefore, identifying novel and unique drug targets against this pathogen is instrumental to overcome the problem of drug resistance to the antibiotics given to patients as the current therapy. In this study, a comparative analysis of the metabolic pathways of the host and pathogen was performed to identify this pathogen's essential enzymes for the survival and propose potential drug targets. First, we extracted the metabolic pathways of the host, Homo sapiens, and pathogen, S. flexneri, from the KEGG database. Next, we manually compared the pathways to categorize those that were exclusive to the pathogen. Further, all enzymes for the 26 unique pathways were extracted and submitted to the Geptop tool to identify essential enzymes for further screening in determining the feasibility of the therapeutic targets that were predicted and analyzed using PPI network analysis, subcellular localization, druggability testing, gene ontology and epitope mapping. Using these various criteria, we narrowed it down to prioritize 5 novel drug targets against S. flexneri and one vaccine drug targets against all strains of Shigella. Hence, we suggest the identified enzymes as the best putative drug targets for the effective treatment of S. flexneri.

Apoptin gene delivery by a PAMAM dendrimer modified with a nuclear localization signal peptide as a gene carrier for brain cancer therapy

  • Bae, Yoonhee;Lee, Jell;Kho, Changwon;Choi, Joon Sig;Han, Jin
    • The Korean Journal of Physiology and Pharmacology
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    • 제25권5호
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    • pp.467-478
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    • 2021
  • In this study, we aimed to synthesize PAMAMG3 derivatives (PAMAMG3-KRRR and PAMAMG3-HKRRR), using KRRR peptides as a nuclear localization signal and introduced histidine residues into the KRRR-grafted PAMAMG3 for delivering a therapeutic, carcinoma cell-selective apoptosis gene, apoptin into human primary glioma (GBL-14) cells and human dermal fibroblasts. We examined their cytotoxicity and gene expression using luciferase activity and enhanced green fluorescent protein PAMAMG3 derivatives in both cell lines. We treated cells with PAMAMG3 derivative/apoptin complexes and investigated their intracellular distribution using confocal microscopy. The PAMAMG3-KRRR and PAMAMG3-HKRRR dendrimers were found to escape from endolysosomes into the cytosol. The JC-1 assay, glutathione levels, and Annexin V staining results showed that apoptin triggered cell death in GBL-14 cells. Overall, these findings indicated that the PAMAMG3-HKRRR/apoptin complex is a potential candidate for an effective nonviral gene delivery system for brain tumor therapy in vitro.

암 치료 표적으로써 prostate apoptosis response-4 (Par-4) (Prostate Apoptosis Response-4 (Par-4) as a Cancer Therapeutic Target)

  • 우선민;권택규
    • 생명과학회지
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    • 제25권8호
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    • pp.947-952
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    • 2015
  • Par-4는 종양 억제 유전자로 암세포 선택적으로 세포사멸을 증진하는 기능을 가진다. Par-4 유전자는 nuclear localization sequences (NLS), leucine zipper (LZ), nuclear export sequence (NES), selective for apoptosis in cancer cells (SAC)의 네 가지 도메인을 가지고 있다. 이 중에서도 SAC 도메인이 Par-4에 의한 세포사멸에 중요한 역할을 하며, 이러한 Par-4의 활성화는 세포 내 경로와 세포 외 경로로 나누어진다. 세포질 내의 Par-4는 핵 내로 이동하여 NF-κB 매개의 세포 성장 경로를 억제하고 세포 밖으로 분비된 Par-4는 세포 표면에 존재하는 수용체인 GRP78과 결합하여 세포 사멸을 유도한다. 따라서 Par-4의 발현을 증가시키는 물질에 의한 세포 사멸뿐만 아니라 암세포에서 발현이 낮은 Par-4의 과발현을 통하여 세포사멸 민감화가 증진된다. 따라서 Par-4는 암 치료의 강력한 표적으로의 가능성을 가지고 있다.

Genome wide identification of Staufen2-bound mRNAs in embryonic rat brains

  • Maher-Laporte, Marjolaine;DesGroseillers, Luc
    • BMB Reports
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    • 제43권5호
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    • pp.344-348
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    • 2010
  • Messenger ribonucleoprotein particles (mRNPs) are used to transport mRNAs along neuronal dendrites to their site of translation. Staufen2 is an mRNA-binding protein expressed in the cell bodies and cellular processes of different brain cells. It is notably involved in the transport of dendritic mRNAs along microtubules. Its knockdown expression was shown to change spine morphology and impair synaptic functions. However, the identity of Staufen2-bound mRNAs in brain cells is still completely unknown. As a mean to identify these mRNAs, we immunoprecipitated Staufen2-containing mRNPs from embryonic rat brains and used a genome wide approach to identify Staufen2-associated mRNAs. The genome wide approach identified 1780 mRNAs in Staufen2-containing mRNPs that code for proteins involved in cellular processes such as post-translational protein modifications, RNA metabolism, intracellular transport and translation. These results represent an additional and important step in the characterization of Staufen2- mediated neuronal functions in rat brains.

인삼 종자의 성숙과 후숙 과정에서 배유세포내 섬유소 가수분해효소의 분포 및 기능 (Localization and Function of Cellulase in Endosperm Cells of Panax ginseng Seeds during Maturation and After-ripening)

  • 유성철
    • Journal of Plant Biology
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    • 제36권4호
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    • pp.327-335
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    • 1993
  • The active sites, intracellular transport, function of cellulase in association with the disintegration of the storage materials of the endosperm cells during seed maturation and after-ripening of Panax ginseng C.A. Meyer seeds were studied by electron microscopy. Cytochemical activities of the cellulase occurred in protein bodies and vesicles of endosperm cells in seed with red seed coat. In after-ripening seed, the activities were strongly found in the cell wall of endosperm near the umbiliform layer and on neighbouring vesicles, so it is assumed that these cells begin to be decomposed. Cellulase activities were initiated before the decomposition of storage materials. But, no activity was observed in the umbiliform layer, so it is suggested that cellulase lose its activity after the completion of lysis process.

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흰쥐 눈물샘의 Prolactin 존재에 관한 면역전자현미경적 연구 (Immunoelectron Microscopic Localization of Prolactin in Rat Exolacrimal gland)

  • 박경호
    • Applied Microscopy
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    • 제23권1호
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    • pp.25-34
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    • 1993
  • Prolactin has been reported to be present in the tear film of humans and prolactin-like immunoreactivity has been detected by immunofluorescence in acinar cells of the lacrimal glands of humans and rats. The present study was aimed at clarifying the intracellular distribution of the prolactin-like immunoreactivity, using the electron microscope immunogold technique. The lacrimal gland acinar cells have two types of secretory granules: 1) Secretory granules containing flocculent materials irregularly shaped and are often coalesced. 2) Secretory granules are fairly round and contain homogenous materials of a moderate electron density. The density of the granular content varies even within a single cell. We found prolactin-like reactivity in secretory granules, some smaller cytosolic vesicles, Golgi cisternae and nuclei in acinar cells from intact glands of rat. Our present results are consistent with the conclusion that prolactin is present in lacrimal cells. The presence of prolactin reactivity in the nucleus suggests that prolactin may be a regulatory factor modulating gene expression.

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