• 제목/요약/키워드: Intracellular pH

검색결과 411건 처리시간 0.031초

Utilizing Natural and Engineered Peroxiredoxins As Intracellular Peroxide Reporters

  • Laer, Koen Van;Dick, Tobias P.
    • Molecules and Cells
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    • 제39권1호
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    • pp.46-52
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    • 2016
  • It is increasingly apparent that nature evolved peroxiredoxins not only as $H_2O_2$ scavengers but also as highly sensitive $H_2O_2$ sensors and signal transducers. Here we ask whether the $H_2O_2$ sensing role of Prx can be exploited to develop probes that allow to monitor intracellular $H_2O_2$ levels with unprecedented sensitivity. Indeed, simple gel shift assays visualizing the oxidation of endogenous 2-Cys peroxiredoxins have already been used to detect subtle changes in intracellular $H_2O_2$ concentration. The challenge however is to create a genetically encoded probe that offers real-time measurements of $H_2O_2$ levels in intact cells via the Prx oxidation state. We discuss potential design strategies for Prx-based probes based on either the redoxsensitive fluorophore roGFP or the conformation-sensitive fluorophore cpYFP. Furthermore, we outline the structural and chemical complexities which need to be addressed when using Prx as a sensing moiety for $H_2O_2$ probes. We suggest experimental strategies to investigate the influence of these complexities on probe behavior. In doing so, we hope to stimulate the development of Prx-based probes which may spearhead the further study of cellular $H_2O_2$ homeostasis and Prx signaling.

Effect of Macromolecules in Maturation Medium on Oocyte Maturation and Embryonic Development after Parthenogenesis and Nuclear Transfer in Pigs

  • You, Jin-Young;Kim, Jin-Young;Lee, Eun-Song
    • 한국수정란이식학회지
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    • 제24권2호
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    • pp.97-104
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    • 2009
  • The objective of this study was to examine the effect of macromolecule in a maturation medium on nuclear maturation, intracellular glutathione (GSH) level of oocytes, and embryonic development after parthenogenetic activation (PA) and somatic cell nuclear transfer (SCNT) in pigs. Immature pig oocytes were cultured in maturation medium that was supplemented with each polyvinyl alcohol (PVA), pig follicular fluid (pFF) or newborn calf serum (NBCS) during the first 22 h and the second 22 h. Oocyte maturation was not influenced by the source of macromolecules during in vitro maturation (IVM). Embryo cleavage and cell number in blastocyst after PA was altered by the source of macromolecule but no difference was observed in blastocyst formation among treatments. Oocytes matured in PVA-PVA medium showed lower rates of oocyte-cell fusion (70.4% vs. 77${\sim}$82%) and embryo cleavage (75% vs. 86${\sim}$90%) after SCNT than those matured in other media but blastocyst formation was not altered (13${\sim}$27%) by different macromolecules. pFF added to IVM medium significantly increased the intracellular GSH level of oocytes compared to PVA and NBCS, particularly when pFF was supplemented during the first 22 h of IVM. Our results demonstrate that source of macromolecule in IVM medium influences developmental competence of oocytes after PA and SCNT, and that pFF supplementation during the early period (first 22 h) of IVM increases intracellular GSH level of oocytes.

The Modulatory Effect of Sodium Propionate Treatment in the Expression of Inflammatory Cytokines and Intracellular Growth of Brucella abortus 544 in Raw 264.7 Cells

  • Heejin Kim;Tran Xuan Ngoc Huy;Trang Thi Nguyen;Alisha Wehdnesday Bernardo Reyes;WonGi Min;Hu Jang Lee;Jin Hur;Suk Kim
    • Journal of Microbiology and Biotechnology
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    • 제33권8호
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    • pp.1006-1012
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    • 2023
  • In this study, we investigated the effects of sodium propionate (SP) treatment on intracellular mechanism of murine macrophages and its contribution to host immunity during Brucella abortus 544 infection. The intracellular growth assay revealed that SP inhibited Brucella replication inside the macrophages. To determine intracellular signaling involved during SP treatment after Brucella infection, we analyzed the change of five different cytokines production relevant to SP such as TNF-α, IL-10, IFN-γ, IL-1β, and IL-6, and the results indicated that the boost with IL-10 was apparent throughout the culture period for 48 h as well as IL-1β which was apparent at 24 h post-infection and IFN-γ which was apparent at 24 h and 48 h in comparison to SP untreated groups. On the other way, SP-treated cells displayed suppressed production of TNF-α and IL-6 at all time points tested and 48 h post-infection, respectively. Furthermore, we conducted western blot to establish a cellular mechanism, and the result suggested that SP treatment attenuated p50 phosphorylation, part of the NF-κB pathway. These findings indicated that the inhibitory effect of SP against Brucella infection could be attributed through induction of cytokine production and interference on intracellular pathway, suggesting SP as a potential candidate for treating brucellosis.

Micrococcus sp. LL3가 생성하는 intracellular aminopeptidase의 특성 및 정제 (Purification and partial characteristics of intracellular aminopeptidase from micrococcus sp. LL3)

  • 이시경;주현규
    • Applied Biological Chemistry
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    • 제36권6호
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    • pp.539-546
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    • 1993
  • 본 연구에서는 Cheddar 치즈의 숙성기간을 단축시키고 flavor를 증진시키기 위하여 Micrococcus sp. LL3를 치즈 제조시에 첨가할 목적으로 본 균주가 생성하는 aminopeptidase의 특성을 조사하였으며, 또한 본 효소를 정제하였다. L-Leucine-p-nitroanilide를 기질로 사용 하였을 때 본 효소의 최적온도와 pH는 각각 $30^{\circ}C$ 및 7.0이었다. 본 효소는 $50^{\circ}C$까지의 온도에서 10분간 방치하였을 경우에도 안정하였다. $Mg^{++}$ ion에 의해 본 효소의 활성이 촉진되었으나 $Hg^{++}$ ion과 EDTA나 1,10-phenanthroline에 의해서 효소활성이 거의 실활되어 metallopeptidase인 것으로 추정되었다. 본 효소의 기실 특이성은 광범위 하였으나, N-terminal amino acid로서 arginine을 함유한 peptide는 분해하지 못했다. 본 균주가 생성하는 aminopeptidase의 정제를 위하여 DEAE-Sephacel ion chromatography및 gel filtration을 실시하였으며, 이때 분자량 46,500의 효소를 얻을 수 있었다.

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A Strategy to Increase Microbial Hydrogen Production, Facilitating Intracellular Energy Reserves

  • Lee, Hyo Jung;Park, Jihoon;Lee, Joo-Young;Kim, Pil
    • Journal of Microbiology and Biotechnology
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    • 제26권8호
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    • pp.1452-1456
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    • 2016
  • Overexpression of the genes encoding phosphoeneolpyruvate carboxykinase (pckA) and NAD-dependent malic enzyme (maeA) facilitates higher intracellular ATP and NAD(P)H concentrations, respectively, under aerobic conditions in Escherichia coli. To verify a hypothesis that higher intracellular energy reserves might contribute to H2 fermentation, wild-type E. coli strains overexpressing pckA and maeA were cultured under anaerobic conditions in a glucose minimal medium. Overexpression of pckA and maeA enabled E. coli to produce 3-times and 4-times greater H2 (193 and 284 nmol, respectively) than the wild type (66 nmol H2). The pckA and maeA genes were further overexpressed in a hydrogenase-3-enhanced E. coli strain. The hydrogenase-3-enhanced strain (W3110+fhlA) produced 322 nmol H2, whereas the ATP-enhanced strain (W3110+fhlA+pckA) produced 50% increased H2 (443 nmol). Total H2 in the NAD(P)H-enhanced strain (W3110+fhlA+maeA) was similar to that in the control strain at 319 nmol H2. Possible explanations for the contribution of the increased cellular energy reserves to the enhanced hydrogen fermentation observed are discussed based on the viewpoint of metabolic engineering strategy.

쥐 상장간막 동맥과 그 분지에서 pH 변화가 혈관평활근 수축성에 미치는 영향 (Effect of pH Change on Vascular Smooth Muscle Contractility in Rat Superior Mesenteric Artery and Its Branches)

  • 최수승
    • Journal of Chest Surgery
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    • 제43권4호
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    • pp.345-355
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    • 2010
  • 산성화를 초래하는 Hypoxia 등 여러 가지 조건에서 변화하는 세포외 pH 변화는 궁극적으로 세포내 pH 변화를 유발하며 세포 내외 pH 변화는 혈관평활근 수축성 변화를 유발한다. 이러한 세포 내외 pH 변화에 의한 혈관 수축성 변화 기전을 규명하고자, pH 변화가 혈관수축인자들에 의한 혈관평활근 수축, 혈관평활근세포내 $Ca^{2+}$ 농도, 그리고 혈관평활근의 $Ca^{2+}$에 대한 민감도에 미치는 영향을 알아보고자 하였다. 대상 및 방법: 쥐에서 분리한 상장간막동맥과 그 분지에서 등장성 수축을 기록하였으며 배양한 상장간막동맥 세포에서 세포내 $Ca^{2+}$ 변화를 측정하였다. 세포외 pH는 정상인 7.4에서 6.4, 6.9 혹은 7.8로 변화시켰으며, 세포내 pH 변화는 propionic acid나 $NH_4$를 투여하거나 ${\beta}$-escin으로 세포막의 투과성을 증가시켜 세포외 용액의 pH 변화로 유발시켰다. 결과: 세포외 pH를 7.4에서 6.9, 6.4로 감소시키면 노에피네프린과 세로토닌에 의한 용량-반응 곡선이 우측 이동하였으며 최대 수축력의 50% 수축력을 유발하는 농도(half maximal effective concentration)가 증가하였고, pH를 7.8로 증가시키면 그 반대 현상이 일어났다. 노에피네프린은 배양한 혈관평활근세포에서 세포내 $Ca^{2+}$ 농도를 증가시켰으며, 이 세포내 $Ca^{2+}$ 증가는 세포외 pH 감소에 의하여 억제되었으며 세포외 pH 증가에 의하여 증가하였다. 노에피네프린에 의한 수축은 세포내 pH를 감소시키는 $NH_4$에 의하여 억제된 반면, 안정 장력은 $NH_4$과 propionic acid에 의하여 증가하였다. ${\beta}$-escin으로 세포막의 투과도를 증가시킨 후 세포외 용액의 $Ca^{2+}$ 농도를 증가시켜 수축을 유발시킨 후 세포외 용액의 pH를 변화시키면 pH 감소에 의하여 수축력이 감소하였으며 증가에 의하여 수축력이 증가하였다. 결론: 세포외 pH의 감소는 혈관평활근의 수축성을 감소시키는데 이는 세포외 pH 감소에 의한 혈관평활근의 혈관수축물질에 대한 반응성 감소, 혈관평활근 세포내 $Ca^{2+}$ 유입 억제 그리고 $Ca^{2+}$에 대한 혈관평활근의 민감성 감소에 의하여 일어난 것으로 추정할 수 있었다.

Analysis of a Sphingosine 1-phosphate Receptor $hS1P_3$ in Rat Hepatoma Cells

  • Im, Dong-Soon
    • The Korean Journal of Physiology and Pharmacology
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    • 제6권3호
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    • pp.139-142
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    • 2002
  • To examine intracellular signaling of human $S1P_3\;(hS1P_3),$ a sphingosine 1-phosphate (S1P) receptor in plasma membrane, $hS1P_3$ DNA was transfected into RH7777 rat hepatoma cell line, and the inhibition of forskolin-induced cAMP accumulation and activation of MAP kinases by S1P were tested. In $hS1P_3$ transformants, S1P inhibited forskolin-induced activation of adenylyl cyclase activity by about 80% and activated MAP kinases in dose-dependent and pertussis-toxin (PTX) sensitive manners. In oocytes expressing $hS1P_3$ receptor, S1P evoked $Cl^-$ conductance. These data suggested that PTX-sensitive G proteins are involved in $hS1P_3-mediated$ signaling, especially the positive action of S1P in cell proliferation. The potential advantages of rat hepatoma cells for the research of sphingosine 1-phosphate receptor are discussed.

Antioxidant Effect of Alpha-Linolenic Acid during In Vitro Maturation in Porcine Oocytes

  • Lee, Ji-Eun;Hwangbo, Yong;Kim, Hwa-Young;Cheong, Hee-Tae;Yang, Boo-Keun;Park, Choon-Keun
    • Reproductive and Developmental Biology
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    • 제41권4호
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    • pp.65-70
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    • 2017
  • Alpha-linolenic acid (ALA) is one of n-3 polyunsaturated fatty acids and found mainly in the chloroplasts. Many studies have been reported that intracellular reactive oxygen species (ROS) in mammalian oocytes were reduced by supplementation of ALA in in vitro maturation (IVM) medium. Based on these reports, we expected that ALA acts as an antioxidant during IVM of porcine oocytes. Therefore, the objective of this study was to investigate the antioxidant effect of ALA supplementation during IVM in porcine oocytes. The cumulus-oocyte complexes (COCs) were incubated in IVM medium containing $200{\mu}m$ $H_2O_2$ or $H_2O_2$ with $50{\mu}m$ ALA for 44 h. Nuclear maturation stage of oocytes was evaluated using aceto-orcein method. For measurement of oxidative stress state, intracellular ROS and glutathione (GSH) levels were measured using carboxy-DCFDA and cell tracker red, respectively. In results, oocytes in metaphase-II (MII) stage development was significantly reduced in $H_2O_2$ group compared to non-treated control group $61.84{\pm}1.42%$ and 80.00%, respectively; p<0.05) and it was slightly recovered by treatment of ALA ($69.76{\pm}1.67%$; p<0.05). The intracellular GSH levels was decreased in $H_2O_2$ groups compared with control groups, but it was enhanced by ALA treatment (p<0.05). On the contrary, $H_2O_2$ treatment increased intracellular ROS level in oocytes and $H_2O_2$-induced ROS was decreased by treatment of ALA (p<0.05). Our findings suggested that ALA treatment under oxidative stress condition improve oocyte maturation via elevated GSH and reduced ROS levels in oocytes. Therefore, these results suggest that ALA have an antioxidative ability and it could be used as antioxidant in in vitro production system of porcine embryo.

인삼뿌리의 적변현상과 근권미생물 (The Relationships between the Microorganisms and the Red-Colored Phenomena of Ginseng (Panax ginseng C.A. Meyer))

  • 윤길영;양덕조
    • Journal of Ginseng Research
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    • 제25권1호
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    • pp.53-58
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    • 2001
  • 적변삼과 건전삼 그리고 이들의 근권토양으로부터 분리한 토양세균과 적변현상과의 관계를 구명하고자 pH 변화와 철 이온에 따른 토양세균의 생장 특성을 조사한 결과, 분리된 모든 토양세균은 pH 3.0에서는 생장하지 못하였다. 그러나 RCG와 RCS는 2 mM Fe$^{3+}$ 가 포함된 배지에서는 pH 3.0에서도 생장하였다. 특히, RCG의 경우는 철이 포함된 배지에서는 철이 없는 배지보다 생장이 2배 정도 높았다. 적변삼의 뿌리에서 분리된 토양세균(RCG)은 pH 5.0에서 pH 9.0사이에서는 생장에 큰 차이가 없었으나, 건전삼의 근권토양에서 분리된 토양세균(HES)은 다른 곳에서 분리된 세균에 비해 생장이 낮았다. 적변삼의 근권토양에서 분리한 토양세균(RCS)과 표토에서 분리한 토양세균(SUS)의 생장은 pH5.0에서 pH 7.0과 pH 9.0에 비해 다소 낮았다. 분리된 모든 토양세균의 cellulase효소활성은 철이온이 포함된 배지에서 철이온이 없는 배지보다 2배 이상 높게 나타났다. 세포 외효소 활성은 세포 내 효소 활성보다 약 10 이상 높았고, pH5.0에서 RCS의 효소활성은 pH 7.0 보다 2배 이상 높았다. 특히, 2 mM Fe$^{3+}$ 가 포함된 배지에서 RCS의 세포 내 효소활성은 철이온이 없는 배지보다 6~7배 높았고 세포 외 효소의 경우에는 11~12배가 증가되었다. 이러한 결과는 인삼의 적변현상과 관련된 토양세균은 철이온의 산화환원과cellulase분비에 의한 세포벽 분해 그리고 인삼 표피세포에 철이온과 강력한 리간드를 형성하는 것으로 판단된다.

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Metformin Induces Lipogenesis and Apoptosis in H4IIE Hepatocellular Carcinoma Cells

  • Deokbae Park;Sookyoung Lee;Hyejin Boo
    • 한국발생생물학회지:발생과생식
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    • 제27권2호
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    • pp.77-89
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    • 2023
  • Metformin is the most widely used anti-diabetic drug that helps maintain normal blood glucose levels primarily by suppressing hepatic gluconeogenesis in type II diabetic patients. We previously found that metformin induces apoptotic death in H4IIE rat hepatocellular carcinoma cells. Despite its anti-diabetic roles, the effect of metformin on hepatic de novo lipogenesis (DNL) remains unclear. We investigated the effect of metformin on hepatic DNL and apoptotic cell death in H4IIE cells. Metformin treatment stimulated glucose consumption, lactate production, intracellular fat accumulation, and the expressions of lipogenic proteins. It also stimulated apoptosis but reduced autophagic responses. These metformin-induced changes were clearly reversed by compound C, an inhibitor of AMP-activated protein kinase (AMPK). Interestingly, metformin massively increased the production of reactive oxygen species (ROS), which was completely blocked by compound C. Metformin also stimulated the phosphorylation of p38 mitogen-activated protein kinase (p38MAPK). Finally, inhibition of p38MAPK mimicked the effects of compound C, and suppressed the metformin-induced fat accumulation and apoptosis. Taken together, metformin stimulates dysregulated glucose metabolism, intracellular fat accumulation, and apoptosis. Our findings suggest that metformin induces excessive glucose-induced DNL, oxidative stress by ROS generation, activation of AMPK and p38MAPK, suppression of autophagy, and ultimately apoptosis.