• 제목/요약/키워드: Subcellular distribution

검색결과 53건 처리시간 0.03초

분열효모에서 Nup97의 기능과 세포 내 위치에 대한 연구 (The Study on Function and Localization of Nup97 in Fission Yeast)

  • 황덕경;윤진호
    • 미생물학회지
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    • 제44권2호
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    • pp.105-109
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    • 2008
  • 발아효모 Saccharomyces cerevisiae의 핵공단백질인 Nic96 단백질과 유사성을 보이는 분열효모 Schizosaccharomyces pombe의 Nup97의 기능과 세포 내 위치를 조사하였다. nup97을 과 발현시켰을 때는 생장과 $poly(A)^{+}$ RNA의 분포에 별다른 이상을 보이지 않았다. 하지만, $kan^{r}$ 유전자를 이용하여 제작한 ${\Delta}nup97$ 결실돌연변이는 nup97의 발현이 억제되면, $poly(A)^{+}$ RNA가 핵 안에 축적되었고 비정상적인 DNA 분포를 보였으며 결국 생장하지 못했다. 한편, Nup97p의 N말단 또는 C말단에 GFP를 붙인 Nup97-GFP 융합단배질의 세포 내 위치를 확인하고자 하였다. 이러한 융합단백질들이 ${\Delta}nup97$ 결실돌연변이의 생장결함을 정상적으로 상보하는 것을 확인하고, nup97-GFP 유전자를 염색체의 nup97 유전자 위치에 삽입한 균주를 제작하였다. 자신의 프로모터에서 발현된 Nup97-GFP 융합단백질은 정상적인 기능을 보였으며, 핵막 주위에 점점 이 위치하였다. 이와 같은 결과들은 Nup97 단백질 역시 핵공단배질로 mRNA의 핵에서 세포질로의 이동에 중요하다는 것을 시사한다.

Catecholamines에 관(關)하여 -제삼편(第三編) 심장(心臟) Catecholamines에 관(關)한 실험적(實驗的) 연구(硏究)- (Experimental Studies on Cardiac Catecholamine Content)

  • 이우주
    • 대한약리학회지
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    • 제9권1호
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    • pp.1-21
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    • 1973
  • During the last decade extensive studios on catecholamines have evolved new knowledge in the physiology and biochemistry of adrenergic mechanism. Cardiac muscle, receiving adrenergic fibres from the stellate, cervical and thoracic ganglia, has been repeatedly shown to have a specific capacity to uptake and to store catecholamines. The catecholamine stores in cardiac muscle have also been shown to be important sites for the action of numerous drugs. Under normal condition, a certain level of catecholamines is maintained in the stores and serves as the basis for studying the changes in the catecholamine content of the heart. Because myocardial catecholamines play such important role in the patho-physiology of the heart, it would be interesting to compare the normal level of myocardial catecholamines among various species of animals. An occasional study has dealt with myocardial catecholamines of several species add ages of animals but these have been insufficiently comprehensive to afford a basis for an understanding of the importance of these amines as related to species and ages. The present investigation was undertaken to determine whether or not there is any significance of myocardial catecholamines in the course of the evolution and development of animals. Seasonal changes, sex difference and regional and subcellular distribution of myocardial catecholamines were also examined. The concentration of cardiac catecholamines was determined by the spectrophotofluorometric procedure described by Shore and Olin. The results obtained were summarized as follows: 1. As animals phylogenetically progressed larger amounts of catecholamines were resent in their hearts. A negligibly small amount of catecholamine was present in the hearts of the clam, a non-vertebrate. Among the vertebrates, cold-blooded animals (snake, turtle, frog, eel and fish) had less myocardial catecholamines than warm-blooded animals, of which aves (fowl and duck) had less than mammalia (cat, dog, rabbit, rat, cow and pig). The ratio of norepinephrine to epinephrine also was greater as the animals progress phylogenetically. 2. Examination of the regional distribution of cardiac catecholamines in warm-blooded animals showed that the content of the auricle was generally higher than that of the septum and considerably than that of the ventricle, but the differences of contents among these regions were not so marked. 3. In the embryonic chick, cardiac catecholamines were firstly detected on the 4th day of incubation, the time before the cardiac innervation of sympathetic nerves. The concentrations of these catecholamines increased but not markedly on the 6th day of incubation, soon after the innervation of sympathetic nerves to the heart. The level of the cardiac catecholamines fluctuated throughout the remainder of embryonic development. 4. In newborn rat hearts, a considerable amount of catecholamines was present. With the development of the rats, the concentrations of myocardial catecholamines increased. The ratio of epinephrine and norepinephrine fluctuated within the range of 40 to 60 pervent. However, as development progressed, the percentage of norepinephrine continued to rise, attaining the adult value of $80{\sim}90%$ after $45{\sim}60$ days. In contrast, the total amount of epinephrine remained fairly constant throughout the animal's development. 5. No significant sexual differences were observed in the concentration of myocardial catecholamines in the developing rat. 6. The catecholamines in the rabbit hearts increased during the summer season (from May to August) and maintained a fairly constant level in the other seasons of the year. 7. The subcellular distribution of cardiac catecholamines was examined by differential centrifugation of homogenates of cardiac muscles in rabbits, cats and rats. The catecholamines were found to be present approximately 20% in particles of mitochondrial fraction, 45% in particles of microsomal fraction and 35% in soluble supernatant fraction. The particle containing catecholamines in cardiac muscle appears to be two different sizes.

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The large-conductance calcium-activated potassium channel holds the key to the conundrum of familial hypokalemic periodic paralysis

  • Kim, June-Bum;Kim, Sung-Jo;Kang, Sun-Yang;Yi, Jin Woong;Kim, Seung-Min
    • Clinical and Experimental Pediatrics
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    • 제57권10호
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    • pp.445-450
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    • 2014
  • Purpose: Familial hypokalemic periodic paralysis (HOKPP) is an autosomal dominant channelopathy characterized by episodic attacks of muscle weakness and hypokalemia. Mutations in the calcium channel gene, CACNA1S, or the sodium channel gene, SCN4A, have been found to be responsible for HOKPP; however, the mechanism that causes hypokalemia remains to be determined. The aim of this study was to improve the understanding of this mechanism by investigating the expression of calcium-activated potassium ($K_{Ca}$) channel genes in HOKPP patients. Methods: We measured the intracellular calcium concentration with fura-2-acetoxymethyl ester in skeletal muscle cells of HOKPP patients and healthy individuals. We examined the mRNA and protein expression of KCa channel genes (KCNMA1, KCNN1, KCNN2, KCNN3, and KCNN4) in both cell types. Results: Patient cells exhibited higher cytosolic calcium levels than normal cells. Quantitative reverse transcription polymerase chain reaction analysis showed that the mRNA levels of the $K_{Ca}$ channel genes did not significantly differ between patient and normal cells. However, western blot analysis showed that protein levels of the KCNMA1 gene, which encodes $K_{Ca}$1.1 channels (also called big potassium channels), were significantly lower in the membrane fraction and higher in the cytosolic fraction of patient cells than normal cells. When patient cells were exposed to 50 mM potassium buffer, which was used to induce depolarization, the altered subcellular distribution of BK channels remained unchanged. Conclusion: These findings suggest a novel mechanism for the development of hypokalemia and paralysis in HOKPP and demonstrate a connection between disease-associated mutations in calcium/sodium channels and pathogenic changes in nonmutant potassium channels.

Differential Localisation of PARP-1 N-Terminal Fragment in PARP-1+/+ and PARP-1-/- Murine Cells

  • Rajiah, Ida Rachel;Skepper, Jeremy
    • Molecules and Cells
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    • 제37권7호
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    • pp.526-531
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    • 2014
  • Human PARP family consists of 17 members of which PARP-1 is a prominent member and plays a key role in DNA repair pathways. It has an N-terminal DNA-binding domain (DBD) encompassing the nuclear localisation signal (NLS), central automodification domain and C-terminal catalytic domain. PARP-1 accounts for majority of poly-(ADP-ribose) polymer synthesis that upon binding to numerous proteins including PARP itself modulates their activity. Reduced PARP-1 activity in ageing human samples and its deficiency leading to telomere shortening has been reported. Hence for cell survival, maintenance of genomic integrity and longevity presence of intact PARP-1 in the nucleus is paramount. Although localisation of full-length and truncated PARP-1 in PARP-1 proficient cells is well documented, subcellular distribution of PARP-1 fragments in the absence of endogenous PARP-1 is not known. Here we report the differential localisation of PARP-1 Nterminal fragment encompassing NLS in PARP-$1^{+/+}$ and PARP-$1^{-/-}$ mouse embryo fibroblasts by live imaging of cells transiently expressing EGFP tagged fragment. In PARP-$1^{+/+}$ cells the fragment localises to the nuclei presenting a granular pattern. Furthermore, it is densely packaged in the midsections of the nucleus. In contrast, the fragment localises exclusively to the cytoplasm in PARP-$1^{-/-}$ cells. Flourescence intensity analysis further confirmed this observation indicating that the N-terminal fragment requires endogenous PARP-1 for its nuclear transport. Our study illustrates the trafficking role of PARP-1 independently of its enzymatic activity and highlights the possibility that full-length PARP-1 may play a key role in the nuclear transport of its siblings and other molecules.

Differential Expressions of Aquaporin Subtypes in Female Reproductive Tract of Mice

  • Im, Ji Woo;Lee, Chae Young;Kim, Dong-Hwan;Bae, Hae-Rahn
    • 한국발생생물학회지:발생과생식
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    • 제24권3호
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    • pp.177-185
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    • 2020
  • Although many aquaporin (AQP) transcripts have been demonstrated to express in the female reproductive tract, the defined localizations and functions of AQP subtype proteins remain unclear. In this study, we investigated the expression of AQP1, AQP3, AQP5, AQP6, and AQP9 proteins in female reproductive tract of mouse and characterized their precise localizations at the cellular and subcellular levels. Immunofluorescence analyses for AQP1, AQP3, AQP6, and AQP9 showed that these proteins were abundantly expressed in female reproductive tract and that intense immunoreactivities were observed in mucosa epithelial cells with a subtype-specific pattern. The most abundant aquaporin in both vagina and uterine cervix was AQP3. Each of AQP1, AQP3, AQP6, and AQP9 exhibited its distinct distribution in stratified squamous or columnar epithelial cells. AQP9 expression was predominant in oviduct and ovary. AQP1, AQP3, AQP6, and AQP9 proteins were mostly seen in apical membrane of ciliated epithelial cells of the oviduct as well as in both granulosa and theca cells of ovarian follicles. Most of AQP subtypes were also expressed in surface epithelial cells and glandular cells of endometrium in the uterus, but their expression levels were relatively lower than those observed in the vagina, uterine cervix, oviduct and ovary. This is the first study to investigate the expression and localization of 5 AQP subtype proteins simultaneously in female reproductive tract of mouse. Our results suggest that AQP subtypes work together to transport water and glycerol efficiently across the mucosa epithelia for lubrication, proliferation, energy metabolism and pH regulation in female reproductive tract.

총알고둥에서 카드뮴과 아연의 축적과 제거 (Accumulation and Elimination of Cadmium and Zinc in Littorina brevicula)

  • 한수정;이인숙
    • The Korean Journal of Ecology
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    • 제24권1호
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    • pp.35-43
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    • 2001
  • 카드뮴과 아연에 각각 그리고 동시에 노출한 총알고둥(Littorina brevicula)에서 중금속의 생체내 축적, 제거 및 세포내 분포 양상을 조사하였다. 총알고둥을 카드뮴 400 $\mu\textrm{g}$/L 또는 아연 3000 $\mu\textrm{g}$/L에 각각 90일간 노출하였을 경우, 각 중금속의 축적량은 노출기간에 따라 증가하였으며, 70일 이후에는 더 이상 축적량이 증가하지 않았다. 카드뮴과 아연을 동시에 노출하였을 경우에는 각각의 중금속에 노출하였을 경우에 비해 아연의 축적량은 증가하였으나, 카드뮴의 축적량은 감소하였다. 노출실험에 이어 수행한 42일간의 청장실험 결과, 카드뮴은 체외로 제거되지 않았으나, 아연은 제거되었다. 특히 카드뮴과 아연에 동시 노출한 총알고둥의 경우에 아연은 더 신속히 제거되었다. 총알고둥을 카드뮴과 아연에 각각 70일 동안 노출한 후, 체내로 흡수된 카드뮴의 약 60%가 soluble fraction에 분포하고 있었으며, 아연의 75%는 insoluble fraction에 분포하고 있었다. 이러한 경향은 카드뮴과 아연의 동시 노출시에도 유사하게 나타났다. 카드뮴과 아연은 soluble part내의 리간드(ligand) 와의 결합 양상에서도 차이를 나타냈는데, 카드뮴은 90% 이상이 약 6.5 kDa크기의 MBP-1(Metal-Binding Protein-1)과 결합하고 있었으나, 아연은 HMW(High molecular weight fraction, >60 kDa), MBP-1, MBP-2, LMW(Low molecular weight fraction <1 kDa)에 고루 분포하는 것으로 나타났다.

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소의 뇌에서 Neurosteroid Acyltransferase의 분포 및 특성에 관한 연구 (Distribution and Characterization of the Neurosteroid Acyltransferase from the Bovine Brain)

  • 박인호;조성준;조도현
    • Applied Biological Chemistry
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    • 제40권2호
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    • pp.112-116
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    • 1997
  • 소의 뇌에서 neurosteroid의 지방산 에스터를 합성하는 neurosteroid acyltransferase(NSAT)의 뇌에서의 부위별, 세포분획별 분포 및 효소적 특성을 연구하였다. 소의 뇌 NSAT 활성도는 소뇌(小腦)에서 가장 높았으며 그 다음이 중뇌(中腦)이었다. 가장 활성도가 낮은 부위는 대뇌(大腦)로 소뇌(小腦)의 50% 수준이었다. 또한 소뇌 (小腦) microsome에서의 활성도가 다른 세포분획에 비해 매우 높아 NSAT가 microsomal 효소임을 알 수 있었다. NSAT의 최적온도는 $40^{\circ}C$이었으며, pH=4.9에서 최적 pH를 나타냈다. DHEA를 기질로 하였을 때 NSAT의 $K_m$$V_{max}$는 각각 $32.6\;{\mu}M$과 4.86 nmole/mg protein/h였다. 또한 DHEA를 기질로 하였을 때 pregnenolone $({\Delta}5P)$은 NSAT에 대하여 경쟁적 저해제로, testosterone은 비경쟁적 저해제로 작용하였다. ${\Delta}5P$와 testosterone의 Ki는 각각 $22.8\;{\mu}M$$28.2\;{\mu}M$이었다. 따라서 소의 NSAT는 C-3의 ${\beta}-hydroxyl$ 기와 C-17의 ${\beta}-hydroxyl$ 기를 에스터화하는 과정에서 다른 conformation을 가짐을 시사한다.

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Molecular Cloning and Bioinformatic Analysis of SPATA4 Gene

  • Liu, Shang-Feng;Ai, Chao;Ge, Zhong-Qi;Liu, Hai-Luo;Liu, Bo-Wen;He, Shan;Wang, Zhao
    • BMB Reports
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    • 제38권6호
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    • pp.739-747
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    • 2005
  • Full-length cDNA sequences of four novel SPATA4 genes in chimpanzee, cow, chicken and ascidian were identified by bioinformatic analysis using mouse or human SPATA4 cDNA fragment as electronic probe. All these genes have 6 exons and have similar protein molecular weight and do not localize in sex chromosome. The mouse SPATA4 sequence is identified as significantly changed in cryptorchidism, which shares no significant homology with any known protein in swissprot databases except for the homologous genes in various vertebrates. Our searching results showed that all SPATA4 proteins have a putative conserved domain DUF1042. The percentages of putative SPATA4 protein sequence identity ranging from 30% to 99%. The high similarity was also found in 1 kb promoter regions of human, mouse and rat SPATA4 gene. The similarities of the sequences upstream of SPATA4 promoter also have a high proportion. The results of searching SymAtlas (http://symatlas.gnf.org/SymAtlas/) showed that human SPATA4 has a high expression in testis, especially in testis interstitial, leydig cell, seminiferous tubule and germ cell. Mouse SPATA4 was observed exclusively in adult mouse testis and almost no signal was detected in other tissues. The pI values of the protein are negative, ranging from 9.44 to 10.15. The subcellular location of the protein is usually in the nucleus. And the signal peptide possibilities for SPATA4 are always zero. Using the SNPs data in NCBI, we found 33 SNPs in human SPATA4 gene genomic DNA region, with the distribution of 29 SNPs in the introns. CpG island searching gives the data about CpG island, which shows that the regions of the CpG island have a high similarity with each other, though the length of the CpG island is different from each other.This research is a fundamental work in the fields of the bioinformational analysis, and also put forward a new way for the bioinformatic analysis of other genes.

대기오염에 의한 폐장조직 손상 -연구방향의 설정을 위한 논의- (Human Lung Insults due Air Pollutant -A Review for Priority Setting in the Research-)

  • 김건열;백도명
    • 환경위생공학
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    • 제7권2호
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    • pp.95-110
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    • 1992
  • Much progress has been made in understanding the subcellular events of the human lung injuries after acute exposure to environmental air pollutants. Host of those events represent oxidative damages mediated by reactive oxygen species such as superoxide, hydrogen peroxide, and the hydroxy, free radical. Recently, nitric oxide (NO) was found to be endogenously produced by endothelial cells and cells of the reticulo-endothelial system as endothelialderived relaxation factor (EDRF) which is a vasoactive and neurotransmitter substance. Together with superoxide, NO can form another strong oxidant, peroxonitrite. The relative importance of exogenous sources of $N0/N0_2$ and endogenous production of NO by the EDRF producing enzymes in the oxidative stresses to the heman lung has to be elucidated. The exact events leading to chronic irreversible damage are still yet to be known. From chronic exposure to oxidant gases, progressive epithelial and interstitial damages develop. Type I epithelial cells become thicker and cover a smaller average alveolar surface area while thee II cells proliferate instead. Under acute damages, the extent of loss of the alveolar epithelial cell lining, especially type II cells appears to be a good predictor of the ensuing irreversible damage to alveolar compartment. Interstitial matrix undergo remodeling during chronic exposure with increased collagen fibers and interstitial fibroblasts. However, Inany of these changes can be reversed after cessation of exposure. Among chronic lung injuries, genetic damages and repair responses received particular attention in view of the known increased lung cancer risks from exposure to several air pollutants. Heavy metals from foundry emission, automobile traffics, and total suspended particulate, especially polycystic aromatic hydrocarbons have been positively linked with the development of lung cancer. Asbestos in another air pollutant with known risk of lung cancer and mesothelioma, but asbestos fibers are nonauthentic in most bioassays. Studies using the electron spin resonance spin trapping method show that the presence of iron in asbestos accelerates the production of the hydroxy, radical in vitro. Interactions of these reactive oxygen species with particular cellular components and disruption of cell defense mechanisms still await further studies to elucidate the carcinogenic potential of asbestos fibers of different size and chemical composition. The distribution of inhaled pollutants and the magnitude of their eventual effects on the respiratory tract are determined by pollutant-independent physical factors such as anatomy of the respiratory tract and level and pattern of breathing, as well as by pollutant-specific phyco-chemical factors such as the reactivity, solubility, and diffusivity of the foreign gas in mucus, blood and tissue. Many of these individual factors determining dose can be quantified in vitro. However, mathematical models based on these factors should be validated for its integrity by using data from intact human lungs.

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Poly A tail이 없는 SV 40 spliced RNA의 구조 및 핵내 축적의 원인 (The Structure and The Reason for Nuclear Accumulation of Poly A(-) Spliced SV40 RNA)

  • 박주상;노정혜
    • 미생물학회지
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    • 제27권1호
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    • pp.1-9
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    • 1989
  • SV40 바이러스가 원숭이 세포(CVIP)에 감염한 후기에 생기는 poly A(-) 19S RNA의 5'끝과 splicing 유형을 알아보기 위하여 primer extension 및 그 변형방법을 행하였다. 이 RNA의 5' 끝은 SV40 후가 RNA들이 가장 많이 사용하는 cap 자리 인 잔기 325 위치임이 밝혀졌다. 또한 splicing 유형도 세포질의 polyA(+)인 19S RNA와 같은 잔기 373에서 잔기 5581까지의 intron이 제거된 형태이었다. Sl 뉴클리아제에 의한 분석결과 이 RNA의 3' 끝은 polyadenylation 위치로부터 상위로 약11kb에 걸쳐 다양하게 존재함을 알았다. 정상적인 cap 자리와 splicing 형태를 지닌 이 RNA가 왜 핵에 축적되는지의 이유를 조사하였다. 이 RNA상에 사용되지 못한채로 남아있는 3' splice 부위가 핵내 편재를 유발했는지의 여부를 알아보기 위하여, 3' splice 부위를 결손시킨 돌연변이 SV 40 pNA를 세포에 도입시켰다.. 그 결과 3'splice 자리가 없는 RNA는 세포질에 많이 축적됨을 관찰하였다. 이 결손 RNA의 세포질내 축적은 결손으로 인해 RNA의 안정성이 증가함으로써 비롯된 것이 아니라는 것을 actinomycin D 추적실험을 통해 밝혔다. 따라서 정상적인 19S spliced RNA가 세포질로 이동되는 과정을 방해하는 것은 사용되지 않은 3' splice 부위에 형성된 pre-splicing 복합체 때문인 것으로 여겨진다.

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