• 제목/요약/키워드: Physiological signal

검색결과 430건 처리시간 0.029초

In Vitro 고삼투압이 정자 원형질막의 Protein Tyrosine Phosphorylation에 미치는 영향 (In vitro Effect of High Osmolality on Plasma Membrane Activities in the Spermatozoa)

  • 오영근;장재호;최인호;정노팔;신형철;곽병주
    • 대한의생명과학회지
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    • 제6권4호
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    • pp.237-244
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    • 2000
  • 정자의 원형질막은 삼투압에 의해서 영향을 받는다고 보고되고 있다. 이중 세포막내 분자구조의 변화 특히 막지질 구조의 변화와 동반되는 이온채널의 변화 그리고 $Ca^{2+}$과 HCO$^{-}_{3}$의 유동성과도 밀접한 관련이 있는 것으로 보고되고 있다. 지금까지의 연구보고에 의하면, 정자의 첨체반웅 (acrosome reaction)이 일어날 경우 protein tyrosine phosphorylation이 증가되는데 이것은 cAMP, protein kinase A 둥을 통하여 작용되는 것으로 보고되고 있다. 막의 지질변화를 유도하는 물질로 일종의 sterol acceptor인 BSA가 알려져 있는 바, 실제로 BSA가 막지질 성분에 미치는 영향을 관찰한 결과 cholesterol이 유출되고 이온 둥의 유동성 변화가 일어나, 이 유동성 변화가 정자의 adenylyl cyclase를 활성화시켜 cAMP를 증가시키고, PKA가 활성화되어 결과적으로 protein tyrosine phosphorylation이 유도된다고 보는 것이다. 첨체반응과 protein tyrosine phosphorylation과는 밀접한 관계가 있는 것으로 사료되고 있다. 본 연구는 정자 원형질막에서 cholesterol이 유출되어 protein tyrosine phosphorylation이 유도될 때, BSA와 같은 sterol acceptor가 작용할 것이라는 전제하에, 고삼투압 하에서 탈수로 인해 원형질막이 위축되더라도 sterol acceptor가 존재한다면 막지질 성분의 구조적 변화가 억제될 수 있을 것이라는 가설을 설정하였다. 실험결과, 저온 및 고삼투압 하에서 정자운동은 감소되지만 원형질막의 구조적 변화는 없고, 삼투압에 대한 반응정도는 원형질막을 통한 수분이동과 세포공적 변화에 따라 비례적으로 일어난다고 하는 사실을 발견하였다. 이 결과는 정자보존에 있어서 저온변화에 영향을 미치는 여러 인자들 특히 protein tyrosine phosphorylation의 증가와 밀접한 관계가 있음을 시시해 준다. 또한 sterol acceptor로 알려진 BSA는 삼투압이 변화되더라도 역시 중요한 인자로 작용할 수 있음을 알 수 있었으며, 특히 고삼투압으로의 변화는 cAMP와 protein kinase A를 거치는 신호전달과정에 있어서 중요한 요인이라는 사실을 확인할 수 있었다.

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발효 홍삼의 NF-${\kappa}$B 신호전달 조절을 통한 항염증 효과 (Anti-inflammatory Effect of Fermented Red Ginseng Via Regulation of NF-${\kappa}$B Signal Transduction)

  • 황성인;주현정;김효동;곽태원;유병홍;김성구;이철원;황태호;안원근
    • 동의생리병리학회지
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    • 제25권3호
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    • pp.521-527
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    • 2011
  • Recently, Korean ginseng, as immuno-activator, was actively investigated on its effect and mechanism. But purified fermented red ginseng (PFRG) has not been researched enough compared to red ginseng (RG, steamed and dried root of Panax ginseng C. A. Meyer, family Araliaceae) and fermented red ginseng (FRG, fermented red ginseng by Lactobacillus brevis 13094). In this study, we examined RG, FRG and PFRG to compare their anti-inflammatory effect by LPS. According to the result, RAW 264.7 cells survival rates did not largely change by RG and FRG. Only PFRG expressed weak toxicity at 10 ug/ml. The expression of iNOS and production of Nitric Oxide (NO) decreased depending on the concentration of RG, FRG and PFRG. And the expression of COX-2 also decreased. We tried western blotting for detecting that the expression of iNOS, COX-2 was caused by NF-${\kappa}B$. The result supported that the inhibition of NF-${\kappa}B$ by RG, FRG and PFRG suppressed the expression of iNOS, COX-2 and affected the production of TNF-${\alpha}$. While the anti-inflammatory effect was confirmed from all three types of red ginseng (RG, FRG, PFRG), the effect of PFRG was superior to others. Further research is required on other effects of PFRG.

대추 물 추출물이 RANKL에 의해 유도되는 파골세포 분화에 미치는 영향 (Inhibitory Effect on RANKL-Induced Osteoclast Differentiation by Water Extract of Zizyphus Jujuba Mill)

  • 윤강휴;백종민;김주영;곽성철;천윤희;전병훈;이창훈;최민규;오재민;이명수;김정중
    • 동의생리병리학회지
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    • 제28권1호
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    • pp.29-34
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    • 2014
  • Bone homeostasis is maintained by balance between bone resorbing-osteoclasts and bone forming-osteoblasts. Excessive osteoclastic bone resorption plays a critical role in bone destruction in pathological bone diseases such as osteoporosis, rheumatoid arthritis, and periodontal disease. Many compounds derived from natural products have pharmacological applications and have therapeutic value for treating or preventing several bone diseases characterized by excessive bone resorption. To discover new compounds that can act as anti-resorptive agents, we screened for natural compounds that regulate osteclast differentiation, and found that water extract of Ziziphus Jujuba Mill (WEZJ) has inhibitory effects on osteoclast differentiation. In this study, WEZJ clearly inhibits the osteoclast differentiation in the presence of receptor activator of nuclear factor kB (RANKL), macrophage colony-stimulating factor (M-CSF) without cytoxicity by blocking activation of nuclear factor of activated T cells (NFAT)c1, and c-Fos. In signaling pathway, the phosphorylation of Akt, p38, c-Jun N-terminal kinases (JNK), extracellular signal-regulated kinases (ERK) and the expression of osteoclast-associated receptor (OSCAR), tartrate-resistant acid phosphates (TRAP), Integrin av, Integrin b3, Cathepsin K are suppressed, too. These result suggest that WEZJ may have therapeutic value for treating or preventing several bone diseases characterized by excessive bone destruction.

전침에 의한 CFA유발 통증모델의 NMDA 수용체 의존적 ERK MAPK 발현 변화 (Effects of Electroacupucture on NMDA Receptor-dependent Spinal ERK MAPK Expression in CFA-induced Pain Model)

  • 김하늬;김유리;장지연;최영현;이용태;최병태
    • 동의생리병리학회지
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    • 제24권6호
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    • pp.983-988
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    • 2010
  • The present study aims to investigate a possible mechanism of electroacupuncture (EA) in the spinal dorsal horn that may underlie N-methyl-D-aspartate (NMDA) receptor-associated extracellular signal-regulated kinase (ERK) mitogen-activated protein kinase (MAPK) signaling pathways. The hot plate latency of the ipsilateral hindpaw of EA-treated rats was significantly decreased compared with complete Freund's adjuvant (CFA)-injected ones. The expressions of NR1 and NR2B subuint mRNA of NMDA receptor in the whole L4-5 segments are decreased by CFA treatment, but NR2B subunit was significantly recovered by EA treatment. When we detected the expression of ERK, there were no significant difference between normal and CFA-treated rats with EA or NMDA receptor antagonist MK801. But phosphorylated ERK expressions were markedly induced by CFA, but these inductions were significantly modulated by EA treatment. Although hosphorylation of ERK was also arrested by MK801, these inductions of CFA-injected rats was markedly inhibited only by co-treatment with EA and MK801. Phosphorylated cAMP response element-binding protein (CREB), ERK-related transcriptional factor, showed a significant increase in CFA-treated rats and this increase was slightly inhibited by EA and MK801 treatments. But immunoreaction for phosphorylated CREB were significantly increased by CFA treatment in the superficial laminae of the dorsal horn and these inductions were significantly arrested by co-treatment of EA and MK801. Consequently, the hyperalgesia induced by CFA are associated NMDA receptor and EA and MK801 may showed anti-hyperalgesia via same mechanism for inhibition of ERK and CREB phosphorylation in the dorsal horn.

A New Paradigm to Mitigate Osteosarcoma by Regulation of MicroRNAs and Suppression of the NF-${\kappa}B$ Signaling Cascade

  • Mongre, Raj Kumar;Sodhi, Simrinder Singh;Ghosh, Mrinmoy;Kim, Jeong Hyun;Kim, Nameun;Sharma, Neelesh;Jeong, Dong Kee
    • 한국발생생물학회지:발생과생식
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    • 제18권4호
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    • pp.197-212
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    • 2014
  • Osteosarcoma (OS) is one of the most common malignant primary bone tumors and NF-${\kappa}B$ appears to play a causative role, but the mechanisms are poorly understood. OS is one of the pleomorphic, highly metastasized and invasive neoplasm which is capable to generate osteoid, osteoclast and osteoblast matrix. Its high incidence has been reported in adolescent and children. Cell signal cascade is the pivotal functional mechanism acquired during the differentiation, proliferation, growth and survival of the cells in neoplasm including OS. The major limitation to the success of chemotherapy in OS is the development of multidrug resistance (MDR). Answers to all such queries might come from the knock-in experiments in which the combined approach of miRNAs with NF-${\kappa}B$ pathway is put into use. Abnormal miRNAs can modulate several epigenetical switching as a hallmark of number of diseases via different cell signaling. Studies on miRNAs have opened up the new avenues for both the diagnosis and treatment of cancers including OS. Collectively, through the present study an attempt has been made to establish a new systematic approach for the investigation of microRNAs, bio-physiological factors and their target pairs with NF-${\kappa}B$ to ameliorate oncogenesis with the "bridge between miRNAs and NF-${\kappa}B$". The application of NF-${\kappa}B$ inhibitors in combination with miRNAs is expected to result in a more efficient killing of the cancer stem cells and a slower or less likely recurrence of cancer.

수컷 생쥐 생식기관의 형태에 미치는 에스트로겐 수용체 알파의 선택적 촉진제의 농도별 영향 (Concentration Effect of Estrogen Receptor-${\alpha}$ Selective Agonist on the Morphology of Reproductive Organs of the Male Mice)

  • 한지연;조영국;조현욱
    • Applied Microscopy
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    • 제41권1호
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    • pp.37-45
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    • 2011
  • 암컷호르몬으로 알려져 있는 에스트로겐이 실제로는 수컷 생식기관에도 영향을 미친다. 에스트로겐은 수용체와 결합하여 그 작용을 나타낸다. Propyl pyrazole triol (PPT)은 에스트로겐 수용체 베타에 비해 상대적으로 알파에 410배 혹은 1,000배 더 높은 선택적 친화성으로 결합하는 에스트로겐 수용체 알파 촉진제이다. 본 연구에서는 성체 수컷 생쥐를 대상으로 castor oil에 각각 0.01 mg, 0.1 mg, 1 mg, 4mg의 농도로 희석한 PPT를 1주에 1회씩 8주 동안 피하주사 하였다. 대조군은 castor oil을 주 1회씩 동일한 기간 동안 생쥐에 피하주사 하였다. 정소, 수출소관, 부정소의 조직학적 변화를 현미경으로 관찰하였다. PPT 4mg의 고농도 투여군에서는 체중, 정소, 부정소의 무게가 뚜렷하게 감소되었다. 실험기간 동안 PPT에 의해 세정관의 직경, 부정소의 상피세포 높이가 감소되었다. 부정소에 붙어 있던 지방세포의 크기는 PPT에 의해 줄어들었다. PPT 4 mg 투여군의 경우, 부정소의 꼬리 부위에 저장되는 정자가 관찰되지 않았다. 결론적으로 고농도의 PPT 투여로 인해 성체 수컷 생쥐의 정자형성 억제와 같은 생리학적 변화가 유발되었고 동시에 생식기관의 조직학적 변화도 유발되었다.

ITO 전극 위에 고정된 니켈 나노 입자를 이용한 무효소 혈당센서에 관한 전기화학적인 연구 (The Electrochemical Studies of Non-enzymatic Glucose Sensor on the Nickel Nanoparticle-deposited ITO Electrode)

  • 오인돈;김사만다;최영봉
    • 전기화학회지
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    • 제17권3호
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    • pp.164-171
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    • 2014
  • 무효소 혈당센서는 높은 선택성과 민감성을 가지고 저비용으로 체내 혈당(glucose)을 검출할 수차세대 기술이다. 현재 시판되고 있는 혈당센서는 당을 산화시켜주는 당산화효소와 전극과 효소사이에 전자 전달을 원활하게 해주는 산화/환원 매개체를 이용하여 효소센서로 제작된다. 그러나 이러한 효소센서는 pH, 온도, 습도, 화학적 독성물질 등에 영향을 많이 받아 안정성이 떨어지고, 제작에 비용이 많이 드는 단점을 가지고 있다. 본 논문은 위와 같은 단점을 해결하고자 환원제인 당에 의하여 환원되는 니켈 나노입자를 전기화학적 흡착방법을 이용하여 산화 인듐 주석 전극 (ITO)에 고정시켰다. 고정된 니켈 나노입자는 전극의 표면적을 넓혀 신호를 증폭시키는 효과를 가지고 있으며, 당에 의하여 계속적으로 니켈이 환원됨에 따라 전극 반응에서는 촉매산화전류 반응으로 나타낸다. 당의 농도에 따라서 선형적으로 감응 할 수 있는 최적 조건의 니켈 나노입자를 이용하여 혈당센서를 제작하였다. 또한 체내에 존재하는 방해 인자인 아스코브산의 간섭을 억제하기 위해 음이온 고분자의 표면처리를 통하여 상대적으로 당에 선택적으로 감응하도록 하였다. 제작된 전극을 통하여 당 농도 별 산화 촉매 전류를 순환 전압 전류 법으로 측정한 결과 650 mV (vs. Ag/AgCl)에서 최대 전기적 신호가 발생되었으며, 포도당 0~6.15 mM 의 농도범위에서 전기적 신호가 선형 증가함을 확인할 수 있었다.

기니픽 심장과 심근세포에서 Phenylephrine에 의한 PKC 활성화가 Mg2+ 유리에 미치는 영향 (Effects of phenylephrine-induced PKC activation on Mg2+ release in guinea pig heart and isolated ventricular myocytes)

  • 장성은;강형섭;김진상
    • 대한수의학회지
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    • 제38권1호
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    • pp.29-42
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    • 1998
  • $Mg^{2+}$ is one of the most abundant divalent cations in mammalian body(0.2~1.0mM) and the important physiological roles are : first, the cofactor of many enzyme activities, second, the regulator of glycolysis and DNA synthesis, third, the important role of bioenergetics by regulating of phosphorylation, fourth, the influence of cardiac metabolism and function. In this work we have investigated the regulation of the $Mg^{2+}$ induced by ${\alpha}_1-adrenoceptor$ stimulation in perfused guinea pig hearts and isolated myocytes. The $Mg^{2+}$ content of the perfusate or the supernatant was measured by atomic absorbance spectrophotometry. The elimination of $Mg^{2+}$ in the medium increased the force of contraction of right ventricular papillary muscles, and the left ventricular pressure. Phenylephrine also enhanced the force of contraction in the presence of $Mg^{2+}-free$ medium. ${\alpha}_1-Agonists$ such as phenylephrine and methoxamine were found to induce $Mg^{2+}$ efflux in both perfused hearts and myocytes. These effects were blocked by prazosin, an ${\alpha}_1-adrenoceptor$ antagonist. The $Mg^{2+}$ influx could also be induced by phenylephrine and R59022, a diacylglycerol kinase inhibitor. In the presence of protein kinase C(PKC) inhibitors, phenylephrine produced an increase in $Mg^{2+}$ efflux from perfused hearts. Furthermore, $Mg^{2+}$ efflux by phenylephrine was amplified by phorbol 12-myristate 13-acetate(PMA). This enhancement of $Mg^{2+}$ efflux by PMA was blocked by prazosin in perfused hearts. By contrast, the $Mg^{2+}$ influx could be induced by verapamil, nifedipine, ryanodine in perfused hearts, but not in myocytes. $W^7$, a $Ca^{2+}$/calmodulin antagonist, completely blocked the phenylephrine-induced $Mg^{2+}$ efflux in perfused hearts. In conclusion, $Mg^{2+}$ is responsible for the cardiac activity associated with ${\alpha}_1-adrenoceptor$ stimulation. The mobilization of $Mg^{2+}$ is decreased or increased by ${\alpha}_1-adrenoceptor$ stimulation in guinea pig hearts. These responses may be related specifically to the respective pathways of signal transduction. A decrease in $Mg^{2+}$ efflux by ${\alpha}_1-adrenoceptor$ stimulation in hearts can be through PKC dependent and intracellular $Ca^{2+}$ levels.

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Inhibition of DNA-dependent Protein Kinase by Blocking Interaction between Ku Complex and Catalytic Subunit of DNA-dependent Protein Kinase

  • Kim, Chung-Hui;Cuong, Dang-Van;Kim, Jong-Su;Kim, Na-Ri;Kim, Eui-Yong;Han, Jin
    • The Korean Journal of Physiology and Pharmacology
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    • 제7권1호
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    • pp.9-14
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    • 2003
  • Recent studies indicated that cancer cells become resistant to ionizing radiation (IR) and chemotherapy drugs by enhanced DNA repair of the lesions. Therefore, it is expected to increase the killing of cancer cells and reduce drug resistance by inhibiting DNA repair pathways that tumor cells rely on to escape chemotherapy. There are a number of key human DNA repair pathways which depend on multimeric polypeptide activities. For example, Ku heterodimer regulatory DNA binding subunits (Ku70/Ku80) on binding to double strand DNA breaks (DSBs) are able to interact with 470-kDa DNA-dependent protein kinase catalytic subunit (DNA-PKcs), and are essential for DNA-dependent protein kinase (DNA-PK) activity. It has been known that DNA-PK is an important factor for DNA repair and also is a sensor-transmitting damage signal to downstream targets, leading to cell cycles arrest. Our ultimate goal is to develop a treatment of breast tumors by targeting proteins involved in damage-signaling pathway and/or DNA repair. This would greatly facilitate tumor cell cytotoxic activity and programmed cell death through DNA damaging drug treatment. Therefore, we designed a domain of Ku80 mutants that binds to Ku70 but not DNA end binding activity and used the peptide in co-therapy strategy to see whether the targeted inhibition of DNA-PK activity sensitized breast cancer cells to irradiation or chemotherapy drug. We observed that the synthesized peptide (HNI-38) prevented DNA-PKcs from binding to Ku70/Ku80, thus resulting in inactivation of DNA-PK activity. Consequently, the peptide treated cells exhibited poor to no DNA repair, and became highly sensitive to IR or chemotherapy drugs, and the growth of breast cancer cells was inhibited. Additionally, the results obtained in the present study also support the physiological role of resistance of cancer cells to IR or chemotherapy.

Contradictory Effects of Superoxide and Hydrogen Peroxide on $K_{Ca}3.1$ in Human Endothelial Cells

  • Choi, Shinkyu;Na, Hye-Young;Kim, Ji Aee;Cho, Sung-Eun;Suh, Suk Hyo
    • The Korean Journal of Physiology and Pharmacology
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    • 제17권3호
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    • pp.181-187
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    • 2013
  • Reactive oxygen species (ROS) are generated in various cells, including vascular smooth muscle and endothelial cells, and regulate ion channel functions. $K_{Ca}3.1$ plays an important role in endothelial functions. However, the effects of superoxide and hydrogen peroxide radicals on the expression of this ion channel in the endothelium remain unclear. In this study, we examined the effects of ROS donors on $K_{Ca}3.1$ expression and the $K^+$ current in primary cultured human umbilical vein endothelial cells (HUVECs). The hydrogen peroxide donor, tert-butyl hydroperoxide (TBHP), upregulated $K_{Ca}3.1$ expression, while the superoxide donors, xanthine/xanthine oxidase mixture (X/XO) and lysophosphatidylcholine (LPC), downregulated its expression, in a concentration-dependent manner. These ROS donor effects were prevented by antioxidants or superoxide dismustase. Phosphorylated extracellular signal-regulated kinase (pERK) was upregulated by TBHP and downregulated by X/XO. In addition, repressor element-1-silencing transcription factor (REST) was downregulated by TBHP, and upregulated by X/XO. Furthermore, $K_{Ca}3.1$ current, which was activated by clamping cells with 1 ${\mu}M$ $Ca^{2+}$ and applying the $K_{Ca}3.1$ activator 1-ethyl-2-benzimidazolinone, was further augmented by TBHP, and inhibited by X/XO. These effects were prevented by antioxidants. The results suggest that hydrogen peroxide increases $K_{Ca}3.1$ expression by upregulating pERK and downregulating REST, and augments the $K^+$ current. On the other hand, superoxide reduces $K_{Ca}3.1$ expression by downregulating pERK and upregulating REST, and inhibits the $K^+$ current. ROS thereby play a key role in both physiological and pathological processes in endothelial cells by regulating $K_{Ca}3.1$ and endothelial function.