• 제목/요약/키워드: high density vesicle

검색결과 14건 처리시간 0.024초

고전하밀도 양이온성폴리머와 Sodium dodecyl sulfate가 만드는 콤플렉스에 대한 비이온계면활성제의 영향 (The transformation of the complex of high charge density cationic polymer with sodium dodecyl sulfate into vesicles by nonionic surfactant)

  • 이정노;강계홍
    • 한국응용과학기술학회지
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    • 제25권2호
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    • pp.205-210
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    • 2008
  • The transformation of the liquid crystal complex made by binding of anionic surfactant, sodium dodecyl sulfate (SDS), into high charge density cationic polymer, the homopolymer of diallyldimethylammonium chloride (PDADMAC) was induced by adding of nonionic surfactants and investigated by means of microscopy and FE.SEM. Among nonionic surfactants in this experiments polyethylene glycol (3 mol) ether of lauryl alcohol (laureth-3) made variation in the complex. The laureth-3 transformed the complex into spherulite vesicle with the size of ca.$100{\mu}m$. This change increased the viscosity and the turbidity of the solution phase separated originally. Microscope showed that they are spherulite particles and polarized microscope suggested they are multi.lamellar liquid crystals. FE-SEM also proved that explicitly.

해안(海岸) 간척지(干拓地)에서 Arbuscular Mycorrhizae(AM)에 관한 생태학적(生態學的) 연구(硏究) (Ecological Study on Arbuscular Mycorrhizae(AM) at Coastal Reclaimed Lands)

  • 고성덕
    • 한국균학회지
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    • 제22권4호
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    • pp.394-409
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    • 1994
  • 간척년도가 다른 두 간척지의 고등식물 근권에 존재하는 arbuscular mycorrhizal fungi(AMF)의 포자밀도, 공생강도 및 소포밀도, 그리고 숙주식물인 산조풀, 띠, 비쑥, 갯개미취 및 사데풀의 식물량과 그외의 요소인, 토양의 전기전도도와 Zn 함량 및 식물체속 아연의 함량 등을 조사하여 AMF의 생물학적 특성과 식물의 아연 흡수에 미치는 AMF 공생활성의 영향 등을 연구하였다. 간척지 식물을 토양의 염분함량에 따라 분류하면 염생식물, 임의염생식물, 중성식물의 순으로 AMF 공생활성이 높았고 생활형으로 분류하면 1, 2, 다년 생식물로 감에 따라 AMF 공생활성이 높았다. AMF 공생활성의 계절 변화는 포자밀도가 고등식물의 생육말기부터 봄까지 커짐으로써 가을에 번식함은 알았고, 공생률은 봄, 여름에 높았고 가을에 낮았다. AMF의 공생활성인 포자밀도와 공생강도 사이는 높은 양의 상관이 나타났지만 소포밀도와 포자밀도 또는 소포밀도와 공생강도 사이에는 상관이 없었다. 식물량과 AMF 포자밀도 또는 공생강도 사이에는 높은 양의 상관이 나타났고, 식물량과 소포밀도 사이에는 뚜렷한 상관이 없었다. 이 결과로 간척지의 식물량은 AMF 공생에 의하여 증가되고 포자밀도와 공생강도가 AMF 공생활성의 중요한 척도임을 알았다. 아연 흡수는 AMF 공생활성이 높은 식물이 낮은 식물에 비하여 보다 많은 양을 흡수하였다.

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Transcriptome analysis revealed regulatory mechanisms of light and culture density on free-living sporangial filaments of Neopyropia yezoensis (Rhodophyta)

  • Bangxiang He;Zhenbin Zheng;Jianfeng Niu;Xiujun Xie;Guangce Wang
    • ALGAE
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    • 제38권4호
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    • pp.283-294
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    • 2023
  • Previous research indicated that free-living sporangial filament keep hollow morph under high-culture density and form bipartite cells under low-culture density, while the following conchospore release was inhibited by high light. Here, we further explored the molecular bases of these affects caused by light and culture density using a transcriptome analysis. Many differentially expressed genes (DEGs) related to carbon dioxide concentration and fixation, photosynthesis, chlorophyll synthesis and nitrogen absorption were upregulated under high-light conditions compared with low-light conditions, indicating the molecular basis of rapid vegetative growth under the former. The stress response- and ion transport-related DEGs, as well as the gene encoding the vacuole formation-brefeldin A-inhibited guanine nucleotide exchange protein (BIG, py05721), were highly expressed under high-density conditions, indicating the molecular basis of the hollow morph of free-living sporangial filaments under high-culture density conditions. Additionally, the brefeldin A treatment indicated that the hollow morph was directly influenced by vacuole formation-related vesicle traffic. Others DEGs related to cell wall components, zinc-finger proteins, ASPO1527, cell cycle and cytoskeleton were highly expressed in the low density with low-light group, which might be related to the formation and release of conchospores. These results provide a deeper understanding of sporangial filaments in Neopyropia yezoensis and related species.

피라미(Zacco platypus)의 난자형성에 관한 연구 (A Study on the Oogenesis of Pale Chub (Zacco platypus))

  • 장성재;김동희;류동석;등영건
    • Applied Microscopy
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    • 제25권3호
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    • pp.63-74
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    • 1995
  • The development of pale chub oocyte from the immature oogonium to mature oocyte was investigated by light and electron microscope. The cytoplasm of pale chub oogonia was acidic and many vesicles were located at inner side of nuclear membrane. In primary oocytes, yolk vesicles were distributed in cytoplasm. Also, fibrous materials and protuberances were distributed on the surface of zona radiata. The nucleus of secondary oocyte was enlarged and yolk vesicles in cytoplasm migrated to zona radiata. In early egg, yolk mass are formed and yolk vesicles were located at inner side of zona radiata. Three-layered zona radiata was about $3{\mu}m$ in thickness. The three layers were an outer fibrous material layer, a middle nurse cell layer in which microvilli of early egg cytoplasm contact with processes of nurse cells, and an inner layer with high electron density. In mature egg, euchromatin and a germinal vesicle were developed, mitochondria, free ribosomes, and yolk mass were distributed in cytoplasm. But, yolk vesicles were disappeared. Specially, zona radiata of matured eggs were better thin than the one of immature eggs In conclusion, it is summerized that the oogenesis of pale chub were the increase of cell size, the formation and accumulation of yolk, the decrease in nucleat electron density, changes of zona radiata, and the development of microvilli.

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Visualization of Extracellular Vesicles of Prokaryotes and Eukaryotic Microbes

  • Kim, Ki Woo
    • Applied Microscopy
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    • 제48권4호
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    • pp.96-101
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    • 2018
  • The release of nanoscale membrane-bound vesicles is common in all three domains of life. These vesicles are involved in a variety of biological processes such as cell-to-cell communication, horizontal gene transfer, and substrate transport. Prokaryotes including bacteria and archaea release membrane vesicles (MVs) (20 to 400 nm in diameter) into their extracellular milieu. In spite of structural differences in cell envelope, both Gram-positive and negative bacteria produce MVs that contain the cell membrane of each bacterial species. Archaeal MVs characteristically show surface-layer encircling the vesicles. Filamentous fungi and yeasts as eukaryotic microbes produce bilayered exosomes that have varying electron density. Microbes also form intracellular vesicles and minicells that are similar to MVs and exosomes in shape. Electron and fluorescence microscopy could reveal the presence of DNA in MVs and exosomes. Given the biogenesis of extracellular vesicles from the donor cell, in situ high-resolution microscopy can provide insights on the structural mechanisms underlying the formation and release of microbial extracellular vesicles.

인슐린의 포도당 이동 촉진 기전에 관한 연구 -세포내부 미세구조와 Cytochalasin B 결합단백질의 분포- (A Study on the Mechanism of Insulin Sensitivity to Glucose Transport System: Distribution of Subcellular Fractions and Cytochalasin B Binding Proteins)

  • 하종식
    • The Korean Journal of Physiology
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    • 제24권2호
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    • pp.331-344
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    • 1990
  • What makes glucose transport function sensitive to insulin in one cell type such as adipocyte, and insensitive in another such as liver cells is unresolved question at this time. Recently it is known that insulin stimulates glucose transport in adipocytes largely by redistributing transporter from the storage pool that is included in a low density microsomal fraction to plasma membrane. Therefore, insulin sensitivity may depend upon the relative distribution of gluscose transporters between the plasma membrane and in an intracellular storage compartment. In hepatocytes, the subcellular distribution of glucose transporter is less well documented. It is thus possible that the apparent insensitivity of the hepatocyte system could be either due to lack of the constitutively maintained, intracellular storage pool of glucose transporter or lack of insulin-mediated transporter translocation mechanism in this cell. In this study, I examined if any intracellular glucose transporter pool exists in hepatocytes and this pool is affected by insulin. The results obtained summarized as followings: 1) Distribution of subcellular fractions of hepatocyte showed that there are $24.9{\pm}1.3%$ of plasma membrane, $36.9{\pm}1.7%$ of nucleus-mitochondria enriched fraction, $23.5{\pm}1.2%$ of lysosomal fraction, $9.6{\pm}1.0%$ of high density microsomal fraction and $4.9{\pm}0.5%$ of low density microsomal fraction. 2) In adipocyte, there were $29.9{\pm}2.6%$ of plasma membrane, $19.4{\pm}1.9%$ of nucleus-mitochondria enriched fraction, $26.7{\pm}1.8%$ of high density microsomal fraction and $23.9{\pm}2.1%$ of low density microsomal fraction. 3) Surface labelling of sodium borohydride revealed that plasma membrane contaminated to lysosomal fraction by $26.8{\pm}2.8%$, high density microsomal fraction by $8.3{\pm}1.3%$ and low density microsomal fraction by $1.7{\pm}0.4%$ respectively. 4) Cytochalasin B bound to all of subcellular fractions with a Kd of $1.0{\times}10^{-6}M$. 5) Photolabelling of cytochalasin B to subcellular fractions occurred on 45 K dalton protein band, a putative glucose transporter and D-glucose inhibited the photolabelling. 6) Insulin didn't affect on the distribution of subcellular fractions and translocation of intracellular glucose transporters of hepatocytes. 7) HEGT reconstituted into hepatocytes was largely associated with plasma membrane and very little was found in low density microsomal fraction which equals to the native glucose transporter distribution. Insulin didn't affect on the distribution of exogeneous glucose transporter in hepatocytes. From the above results it is concluded that insulin insensitivity of hepatocyte may due to lack of intracellular storage pool of glucose transporter and thus intracellular storage pool of glucose transporter is an essential feature of the insulin action.

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배추흰나비(Pieris rapae L.)의 위심세포(圍心細胞)에 관한 연구 (A Study of the Pericardial Cell on the Cabbage Butterfly, Pieris rapae L.)

  • 김창환;김우갑;이근옥
    • Applied Microscopy
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    • 제19권1호
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    • pp.34-48
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    • 1989
  • The oval shaped pericardial cells are clustered along the lateral sides of the heart and irregularly connected with the heart. The cells are bounded by a basement membrane. The basement membranes of the connected two peicardial cells are irregularly linked each other there-fore funnels are formed. The multiple invaginations of the cell membrane are observed and septate junctions develope at the part of enterance of the cell membrane. The coated pits are appeared in the inner side of the invaginated cell membrane. The coated vesicles, tubular and spherical shaped vesicle, Golgi complex containing high electron densed material in the cisternae and mitochondria are observed in the cytoplasm and lysosomes are remarkably well developed. The whirled membrane structures in the multiformed complex bounded by single membrane are linked with low electron densed granules and spherical shaped small granules having high electron density with $0.03{\mu}m$ in diameter are located between the whirled membrane in a row and gradually secretes the granules and then they produced the multilamellar body. The lysosomal regions of cytoplasm of pericardial cell are appeared negative reaction to the acid phosphatase and according to the results of the electrophoresis, lipoproteins having acid phosphatase activity are contained. The axon is contacted with the pericardial cells.

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A Proteomic Screen for Presynaptic Terminal N-type Calcium Channel (CaV2.2) Binding Partners

  • Khanna, Rajesh;Zougman, Alexandre;Stanley, Elise F.
    • BMB Reports
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    • 제40권3호
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    • pp.302-314
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    • 2007
  • N type calcium channels (CaV2.2) play a key role in the gating of transmitter release at presynaptic nerve terminals. These channels are generally regarded as parts of a multimolecular complex that can modulate their open probability and ensure their location near the vesicle docking and fusion sites. However, the proteins that comprise this component remain poorly characterized. We have carried out the first open screen of presynaptic CaV2.2 complex members by an antibody-mediated capture of the channel from purified rat brain synaptosome lysate followed by mass spectroscopy. 589 unique peptides resulted in a high confidence match of 104 total proteins and 40 synaptosome proteome proteins. This screen identified several known CaV2.2 interacting proteins including syntaxin 1, VAMP, protein phosphatase 2A, $G_{o\alpha}$, G$\beta$ and spectrin and also a number of novel proteins, including clathrin, adaptin, dynamin, dynein, NSF and actin. The unexpected proteins were classified within a number of functional classes that include exocytosis, endocytosis, cytoplasmic matrix, modulators, chaperones, and cell-signaling molecules and this list was contrasted to previous reports that catalogue the synaptosome proteome. The failure to detect any postsynaptic density proteins suggests that the channel itself does not exhibit stable trans-synaptic attachments. Our results suggest that the channel is anchored to a cytoplasmic matrix related to the previously described particle web.

Aspergillus ochraseus의 미세구조(微細構造) 및 바이러스 감염(感染)에 관(關)한 연구(硏究) (Studies on Ultrastructure and Virus Infection of Aspergillus ochraseus)

  • 등영건;유영선;이배함
    • Applied Microscopy
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    • 제5권1호
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    • pp.31-43
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    • 1975
  • These studies were carried out to detect the presence of infected virus- like particles and also were observed the ultrastructures of Aspergillus ochraseus isolated from kokja and Korean ginseng. The results of ultrastructures of Aspergillus ochraseus are summarized as follows: 1. In fungal cells, nuclei were enclosed by a irregular double membrane and nucleoli in the nucleus. 2. In cytoplasm, mitochondria, rough endoplasmic reticulum with ribosomes and glycogen were scattering distributed and many lomasomes also observed. 3. The osmiophilic bodies of fungal cells existed in the vesicles. 4. The cell walls were composed of a low electron dense materials. 5, Conidia cell walls were extremely thick and possessed the high electron density of outer coat. The virus-like particles were observed in the hyphae of Penicillium chrysogenum Q-176. These virus-like particles measured $350{\AA}$ in diameter. But strains of Aspergillus ochraseus, showing some vesicle particles were also observed about $800{\AA}$ in diameter in the central region of young fungal hyphae. Based on the results of these experiments, it can not be determined virus particles or not. The further studies to determination of virus particles will be proceeded by the chemical, physical and biological assay methods.

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Characterizing Organelles in Live Stem Cells Using Label-Free Optical Diffraction Tomography

  • Kim, Youngkyu;Kim, Tae-Keun;Shin, Yeonhee;Tak, Eunyoung;Song, Gi-Won;Oh, Yeon-Mok;Kim, Jun Ki;Pack, Chan-Gi
    • Molecules and Cells
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    • 제44권11호
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    • pp.851-860
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    • 2021
  • Label-free optical diffraction tomography (ODT), an imaging technology that does not require fluorescent labeling or other pre-processing, can overcome the limitations of conventional cell imaging technologies, such as fluorescence and electron microscopy. In this study, we used ODT to characterize the cellular organelles of three different stem cells-namely, human liver derived stem cell, human umbilical cord matrix derived mesenchymal stem cell, and human induced pluripotent stem cell-based on their refractive index and volume of organelles. The physical property of each stem cell was compared with that of fibroblast. Based on our findings, the characteristic physical properties of specific stem cells can be quantitatively distinguished based on their refractive index and volume of cellular organelles. Altogether, the method employed herein could aid in the distinction of living stem cells from normal cells without the use of fluorescence or specific biomarkers.