• 제목/요약/키워드: cell motility

검색결과 345건 처리시간 0.025초

L-arginine and N-carbamoylglutamic acid supplementation enhance young rabbit growth and immunity by regulating intestinal microbial community

  • Sun, Xiaoming;Shen, Jinglin;Liu, Chang;Li, Sheng;Peng, Yanxia;Chen, Chengzhen;Yuan, Bao;Gao, Yan;Meng, Xianmei;Jiang, Hao;Zhang, Jiabao
    • Asian-Australasian Journal of Animal Sciences
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    • 제33권1호
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    • pp.166-176
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    • 2020
  • Objective: An experiment was conducted to determine the effects of L-arginine (L-Arg) and N-carbamoylglutamic acid (NCG) on the growth, metabolism, immunity and community of cecal bacterial flora of weanling and young rabbits. Methods: Eighteen normal-grade male weanling Japanese White rabbits (JWR) were selected and randomly divided into 6 groups with or without L-Arg and NCG supplementation. The whole feeding process was divided into weanling stage (day 37 to 65) and young stage (day 66 to 85). The effects of L-Arg and NCG on the growth, metabolism, immunity and development of the ileum and jejunum were compared via nutrient metabolism experiments and histological assessment. The different communities of cecal bacterial flora affected by L-Arg and NCG were assessed using high-throughput sequencing technology and bioinformatics analysis. Results: The addition of L-Arg and NCG enhanced the growth of weanling and young rabbit by increasing the nitrogen metabolism, protein efficiency ratio, and biological value, as well as feed intake and daily weight gain. Both L-Arg and NCG increased the concentration of immunoglobulin A (IgA), IgM, and IgG. NCG was superior to L-Arg in promoting intestinal villus development by increasing villus height, villus height/crypt depth index, and reducing the crypt depth. The effects of L-Arg and NCG on the cecal bacterial flora were mainly concentrated in different genera, including Parabacteroides, Roseburia, dgA-11_gut_group, Alistipes, Bacteroides, and Ruminococcaceae_UCG-005. These bacteria function mainly in amino acid transport and metabolism, energy production and conversion, lipid transport and metabolism, recombination and repair, cell cycle control, cell division, and cell motility. Conclusion: L-Arg and NCG can promote the growth and immunity of weanling and young JWR, as well as effecting the jejunum and ileum villi. L-Arg and NCG have different effects in the promotion of nutrient utilization, relieving inflammation and enhancing adaptability through regulating microbial community.

Kinesin 모터 단백질의 조절 기전 (The Regulation Mechanisms of Kinesin Motor Proteins)

  • 박상준;석정수;문일수;석대현
    • 생명과학회지
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    • 제27권7호
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    • pp.840-848
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    • 2017
  • 세포내 수송 기구는 세포의 작용과 생존에 필수적이다. 이러한 세포내 수송은 긴 미세소관을 따라서 운반체를 운반하는 미세소관 의존 분자 모터 단백질인 kinesin과 cytoplasmic dynein에 의하여 이루어진다. Kinesin은 ATP 의존적으로 미세소관의 plus-end방향으로 이동하는 모터 단백질로 세포내 소기관, 분비소포, RNA 복합체, 단백질 복합체들을 수송한다. Kinesins에 의한 다양한 운반체의 수송의 이상은 세포의 기능 이상과 연관된다. Kinesins에 의한 운반체 수송의 기본 단계는: 운반체 혹은 adaptor 단백질과의 결합, kinesin 기능 활성화와 미세소관을 따라서 이동, 그리고 올바른 위치에서 운반체와의 분리 단계로 나뉘어 진다. 최근의 연구결과들에서 kinesin 모터 기능 활성화, 운반체와의 결합, 운반체와의 해리 기전이 확인되고 있으며 세포내 운반체 수송은 kinesin과 운반체를 연결하는 adaptor 단백질에 의하여서도 조절된다. 단백질 인산화 효소, 탈 인산화 효소를 포함하는 kinesin 모터 활성 조절 단백질들은 kinesin의 인산화 혹은 탈 인산화를 통하여 직접적으로 세포내 수송을 조절하거나, c-Jun NH-terminal kinase-interacting proteins (JIPs)와 같은 adaptor 단백질들과 미세소관의 간접적 수식을 통하여 세포내 수송을 조절하기도 한다. 이러한 연구결과들은 세포의 기능과 형태 유지에 관여하는 kinesin에 의한 다양한 세포내 수송 조절 기전을 이해하는데 기초적인 토대가 된다. 또한 각각의 kinesin에 대한 조절 기전을 밝히는 것은 세포생물학과 신경생리학을 이해하는데 중요하므로 본 종설에서는 kinesin에 의한 세포내 수송을 조절하는 단백질과 kinesin과 수송체와의 결합이 어떻게 조절되는지를 고찰하고자 한다.

Pituitary Adenylate Cyclase-activating Polypeptide Inhibits Pacemaker Activity of Colonic Interstitial Cells of Cajal

  • Wu, Mei Jin;Kee, Keun Hong;Na, Jisun;Kim, Seok Won;Bae, Youin;Shin, Dong Hoon;Choi, Seok;Jun, Jae Yeoul;Jeong, Han-Seong;Park, Jong-Seong
    • The Korean Journal of Physiology and Pharmacology
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    • 제19권5호
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    • pp.435-440
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    • 2015
  • This study aimed to investigate the effect of pituitary adenylate cyclase-activating peptide (PACAP) on the pacemaker activity of interstitial cells of Cajal (ICC) in mouse colon and to identify the underlying mechanisms of PACAP action. Spontaneous pacemaker activity of colonic ICC and the effects of PACAP were studied using electrophysiological recordings. Exogenously applied PACAP induced hyperpolarization of the cell membrane and inhibited pacemaker frequency in a dose-dependent manner (from 0.1 nM to 100 nM). To investigate cyclic AMP (cAMP) involvement in the effects of PACAP on ICC, SQ-22536 (an inhibitor of adenylate cyclase) and cell-permeable 8-bromo-cAMP were used. SQ-22536 decreased the frequency of pacemaker potentials, and cell-permeable 8-bromo-cAMP increased the frequency of pacemaker potentials. The effects of SQ-22536 on pacemaker potential frequency and membrane hyperpolarization were rescued by co-treatment with glibenclamide (an ATP-sensitive $K^+$ channel blocker). However, neither $N^G$-nitro-L-arginine methyl ester (L-NAME, a competitive inhibitor of NO synthase) nor 1H-[1,2,4]oxadiazolo[4,3-${\alpha}$]quinoxalin-1-one (ODQ, an inhibitor of guanylate cyclase) had any effect on PACAP-induced activity. In conclusion, this study describes the effects of PACAP on ICC in the mouse colon. PACAP inhibited the pacemaker activity of ICC by acting through ATP-sensitive $K^+$ channels. These results provide evidence of a physiological role for PACAP in regulating gastrointestinal (GI) motility through the modulation of ICC activity.

전통된장의 면역증강 효과 (Immunostimulatory Effects of Traditional Doenjang)

  • 이창현;윤영;송근섭;김영수
    • 한국식품영양과학회지
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    • 제40권9호
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    • pp.1227-1234
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    • 2011
  • 된장의 면역증강 효과에 미치는 영향을 위장관도에서 관찰하여 다음과 같은 결과를 얻었다. $CD4^+/CD8^+$ T 림프구의 면역조직화학적 염색반응에서 된장식이를 첨가한 모든 실험군에서 $CD4^+$ T 세포는 공장의 점막 고유층과 음와 아래의 고유층에서 강한 면역 반응을 나타내었고, 결장에서는 점막 하층과 외막층의 혈관 주위에서 강한 면역반응을 나타내었다. 반면, $CD8^+$ T 세포는 Group III에서 결장의 점막상피, 점막 고유층, 점막하층 및 외막층에서 강한 면역반응을 나타내었고, uNOS에 대한 면역 반응에서는 된장 식이를 첨가한 모든 실험군에서 결장 점막하층과 근육층신경얼기에서 강한 면역반응을 나타내었다. Protein kinase C-${\alpha}$에 대한 면역반응은 Group II와 Group III에서 점막상피와 근육층에서 강한 면역반응을 나타내었고, stem cell factor에 대한 면역반응은 된장식이를 첨가한 모든 실험군의 점막상피와 Group I의 근육층에서 강한 면역반응을 나타내었다. 이상의 실험결과로 대조군에 비하여 농도별로 된장식이를 첨가한 실험군에서 $CD4^+/CD^+8$에 대하여 강한 면역반응을 보인 것으로 보아 위장관에서 면역능을 증가시킬 것으로 사료되며, uNOS의 증가에 따른 NO의 방출이 위장관의 운동과 혈관운동을 촉진하여 위비움과 결장의 운동을 촉진할 것으로 사료되었다. 또한 농도별로 된장 식이를 첨가한 실험군에서 protein kinase C-${\alpha}$와 stem cell factor에 대한 면역반응이 위장관의 점막상피에서 강하게 나타난 것으로 보아 점막 상피세포의 증식과 분화를 촉진시켜 여러 가지 물질의 흡수와 전달에 관여할 것으로 사료되었다.

Gintonin influences the morphology and motility of adult brain neurons via LPA receptors

  • Kim, Do-Geun;Kim, Hyeon-Joong;Choi, Sun-Hye;Nam, Sung Min;Kim, Hyoung-Chun;Rhim, Hyewhon;Cho, Ik-Hyun;Rhee, Man Hee;Nah, Seung-Yeol
    • Journal of Ginseng Research
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    • 제45권3호
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    • pp.401-407
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    • 2021
  • Background: Gintonin is an exogenous ginseng-derived G-protein-coupled lysophosphatidic acid (LPA) receptor ligand. LPA induces in vitro morphological changes and migration through neuronal LPA1 receptor. Recently, we reported that systemic administration of gintonin increases blood-brain barrier (BBB) permeability via the paracellular pathway and its binding to brain neurons. However, little is known about the influences of gintonin on in vivo neuron morphology and migration in the brain. Materials and methods: We examined the effects of gintonin on in vitro migration and morphology using primary hippocampal neural precursor cells (hNPC) and in vivo effects of gintonin on adult brain neurons using real time microscopic analysis and immunohistochemical analysis to observe the morphological and locational changes induced by gintonin treatment. Results: We found that treating hNPCs with gintonin induced morphological changes with a cell rounding following cell aggregation and return to individual neurons with time relapses. However, the in vitro effects of gintonin on hNPCs were blocked by the LPA1/3 receptor antagonist, Ki16425, and Rho kinase inhibitor, Y27632. We also examined the in vivo effects of gintonin on the morphological changes and migration of neurons in adult mouse brains using anti-NeuN and -neurofilament H antibodies. We found that acute intravenous administration of gintonin induced morphological and migrational changes in brain neurons. Gintonin induced some migrations of neurons with shortened neurofilament H in the cortex. The in vivo effects of gintonin were also blocked by Ki16425. Conclusion: The present report raises the possibility that gintonin could enter the brain and exert its influences on the migration and morphology of adult mouse brain neurons and possibly explains the therapeutic effects of neurological diseases behind the gintonin administration.

세균 생물막 형성의 단계별 특징 (Characteristics of Developmental Stages in Bacterial Biofilm Formation)

  • 김창범;노종복;이현경;최상호;이동훈;박순정;이규호
    • 한국미생물·생명공학회지
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    • 제33권1호
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    • pp.1-8
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    • 2005
  • Since Anton van Leeuwen­hoek first observed a surface-associated multicellular structure of bacterial cells in the 17th century, it has been shown to exhibit an ability to form a biofilm by numerous bacterial species. The biofilm formation is composed of distinct developmental stages, which include an attachment/adhesion of a single cell, a proliferation toward monolayered coverage, a propagation to aggregated microcolony, a maturation to 3-dimensional structure, and subsequently a local degradation. Investigation to identify the essential factors for bacterial biofilm formation has been performed via classical genetic approaches as well as recently developed technologies. The initial stage requires bacterial motility provided by a flagellum, and outermembrane components for surface signal interaction. Type IV-pilus and autoaggregation factors, e.g., type I-fimbriae or Ag43, are necessary to reach the stages of monolayer and micro colony. The mature biofilm is equipped with extracellular polymeric matrix and internal water-filled channels. This complex architecture can be achieved by differential expressions of several hundred genes, among which the most studied are the genes encoding exopolysaccharide biosyntheses and quorum-sensing regulatory components. The status of our knowledge for the biofilms found in humans and natural ecosystems is discussed in this minireview.

Identification of the Vibrio vulnificus fexA Gene and Evaluation of its Influence on Virulence

  • JU HYUN-MOK;HWANG IN-GYUN;WOO GUN-JO;KIM TAE SUNG;CHOI SANG HO
    • Journal of Microbiology and Biotechnology
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    • 제15권6호
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    • pp.1337-1345
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    • 2005
  • Vibrio vulnificus is the causative agent of foodborne diseases such as gastroenteritis and life-threatening septicemia. Microbial pathogenicity is a complex phenomenon in which expression of numerous virulence factors is frequently controlled by a common regulatory system. In the present study, a mutant exhibiting decreased cytotoxic activity toward intestinal epithelial cells was screened from a library of V. vulnificus mutants constructed by a random transposon mutagenesis. By a transposon-tagging method, an open reading frame, fexA, a homologue of Escherichia coli areA, was identified and cloned. The nucleotide and deduced amino acid sequences of the fexA were analyzed, and the amino acid sequence of FexA from V. vulnificus was $84\%\;to\;97\%$ similar to those of AreA, an aerobic respiration control global regulator, from other Enterobacteriaceae. Functions of the FexA were assessed by the construction of an isogenic mutant, whose fexA gene was inactivated by allelic exchanges, and by evaluating its phenotype changes in vitro and in mice. The disruption of fexA resulted in a significant alteration in growth rate under aerobic as well as anaerobic conditions. When compared to the wild-type, the fexA mutant exhibited a substantial decrease in motility and cytotoxicity toward intestinal epithelial cell lines in vitro. Furthermore, the intraperitoneal $LD_{50}$ of the fexA mutant was approximately $10^{1}-10^{2}$ times higher than that of parental wild-type. Therefore, it appears that FexA is a novel global regulator controlling numerous genes and contributing to the pathogenesis as well as growth of V. vulnificus.

Analysis of Membrane Integrity, DNA Fragmentation and Mitochondrial Function in Pig Spermatozoa Sorted by Flowcytometer

  • Kim, In-Cheul;Han, Deug-Woo;Lee, Sung-Won;Ryu, Jae-Weon;Choi, Eun-Ji;Son, Jung-Ho
    • Reproductive and Developmental Biology
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    • 제32권2호
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    • pp.123-126
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    • 2008
  • The objective of this study was to determine the potential hazardous effects of sorting process by flowcytometry on the quality of boar spermatozoa by flowcytometer. Freshly collected boar semen was diluted and divided into two groups; control none sorted and sorted. Sperms in sorted group were processed with flowcytometer for cell sorting with $100\;{\mu}M$ nozzle under the 20 psi pressure. Measurements on each parameter were made at two time points, 0hr (right after sorting) and 24 hr post sorting. Although there was a tendency of lower viability in sorted group than none sorted control group, the percentage of live cells in control ($75.83{\pm}6.92\;&\;59.53{\pm}10.34$) was not significantly different from sorted ($59.70{\pm}7.37\;&\;43.97{\pm}3.76$) at both 0 and 24 hr post sorting. However, sorted sperm showed significantly lower mitochondrial function compared to the control at both 0 h ($79.37{\pm}3.22\;vs.\;63.50{\pm}10.05$) and 24 hr ($67.27{\pm}3.22$ vs. $46.97{\pm}5.37$) time points (p<0.007). Sperm DNA fragmentation rate was significantly lower in control ($22.0{\pm}7.04$) than that of sorted ($32.27{\pm}7.49$) at 24 hr time point (p<0.0002). Taken together, these data suggested thatsorting process by flowcytometer may have influenced sperm motility rather than viability. Also high speed sperm sorting by flowcytometer has significant effects on DNA fragmentation on elapsed time after sorting.

심근세포 및 내피새포의 분화에 미치는 Dimethyl Sulfoxide의 영향 (Effects of Dimethyl Sulfoxide on the Differentiation of Myocardial and Endothelial Cells)

  • 이동협;박이태;한승세;이융창
    • Journal of Yeungnam Medical Science
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    • 제5권2호
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    • pp.111-119
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    • 1988
  • 효소와 기계적인 힘을 이용하여 얻어진 심장세포를 심근세포와 내피세포를 분리하여 48시간 배양한 후 양군으로 나눠서 관찰하였다. 실험군은 배양중에 10% DMSO에 1시간 처리하였고 DMSO를 처리하지 않고 계속 배양한 것을 대조군으로 하였다. DMSO효과를 관찰하기 위하여 도립현미경하에서 세포의 형태, 수축능력, 증식 능력등을 관찰하였고, 심근세포에서는 succinate dehydrogenase 반응으로 사립체의 증감을 대조군과 비교하였고, 심장내과세포에서는 thiamine pyrophosphatase의 반응으로 Golgi의 양을 대조군으로 비교하였다. 실험 결과를 요약하연 다음과 같다. 1. DMSO에 의하여 심근세포는 분화된 형태로 모양이 길어졌고 사립체의 증가에 의해 succinate dehydrogenase의 반응이 대조군보마 강하게 나타났다. 2. DMSO에 의해 심근세포는 근세섬유의 파괴와 혼란이 초래되었고 이로 인하여 수축능력이 감소되었다. 3. 심장내과 세포는 DMSO에 의해 세포증식이 감소되고 고유기능이 강조되어 Golgi의 표지효소안 thiamine pyrophosphatase의 반응이 대조군보다 강하였다. 4. 심장내과세포는 DMSO의 세포접착력 소실과 운동성 소실작용에 의해 배양중 많은 세포의 손실이 초래되었다.

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Effects of Cholecystokinin Octapeptide on Neuronal Activities in the Rat Nucleus Tractus Solitarius

  • Rhim, Hye-Whon;Park, Chan-Woong
    • The Korean Journal of Physiology and Pharmacology
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    • 제4권4호
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    • pp.275-281
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    • 2000
  • Cholecystokinin (CCK) is a gastrointestinal hormone which plays an important role in satiety and gastric motility. It is also widely distributed throughout the central nervous system, where it appears to be involved in the central control of anxiety, feeding behavior and nociception. Two distinct CCK receptor types, $CCK_A$ and $CCK_B,$ have been found in the brain. Both CCK receptors coexist in the rat nucleus tractus solitarius (NTS), which is the primary center for the coordination of peripheral and central activities related to gastrointestinal, cardiovascular and respiratory functions. In order to study ionic actions of CCK on each type of receptor, we investigated the effects of CCK-8S on neurons located in the NTS of the rat using whole-cell patch-clamp recordings in brainstem slices. Application of CCK-8S, under current clamp, produced a membrane depolarization accompanied by action potential firing. This CCK-evoked excitation was dose-dependent $(10\;nM{\sim}10\;{\mu}M)$ and observed in more than 60% of NTS neurons. Under voltage clamp conditions, CCK-8S induced an inward current with a notably increased spontaneous excitatory synaptic activity. However, CCK-8S did not significantly change the amplitude of pharmacologically isolated and evoked EPSP(C)s. Using selective $CCK_A$ and $CCK_B$ receptor antagonists, we observed two different effects of CCK-8S, which suggest $CCK_A$ receptor-mediated inhibitory and $CCK_B$ receptor-mediated excitatory effects in the NTS. These results may help to explain the ability of CCK to modulate gastrointestinal and other reflex systems in the NTS.

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