• 제목/요약/키워드: CCK receptor

검색결과 27건 처리시간 0.022초

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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Effects of ${\gamma}-Aminobutyric$ Acid on Pancreatic Amylase Secretion Evoked by Sodium Oleate in Anesthetized Rats

  • Park, Yong-Deuk;Cui, Zheng-Yun;Park, Hyung-Seo;Park, Hyoung-Jin
    • The Korean Journal of Physiology and Pharmacology
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    • 제6권1호
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    • pp.27-31
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    • 2002
  • ${\gamma}-Aminobutyric$ Acid (GABA) is contained in pancreatic islet ${\beta}-cells$ although its physiological role in pancreatic exocrine function is completely unknown at the present time. Recently, we have reported that exogenous GABA enhances secretagogue-evoked exocrine secretion in the isolated, perfused rat pancreas. This study was aimed to investigate an effect of exogenous GABA on pancreatic exocrine secretion in vivo evoked by intestinal stimulation. Rats were anesthetized with urethane (1.4 g/kg) after 24-h fast with free access to water. GABA $(10,\;30\;and\;100\;{\mu}mol/kg/h),$ given intravenously, did not change spontaneous pancreatic amylase secretion but dose-dependently elevated the amylase secretion evoked by intraduodenal sodium oleate (0.05 mmol/h). GABA $(30\;{\mu}mol/kg/h)$ also further increased the amylase secretion stimulated by CCK (30 pmol/kg/h) plus secretin (20 pmol/kg/h) but failed to modify the amylase secretion induced by secretin alone. GABA $(10,\;30\;and\;100\;{\mu}mol/kg/h)$ also dose-dependently elevated pancreatic amylase secretion evoked by CCK alone. Bicuculline $(100\;{\mu}mol/kg/h),$ a $GABA_A-receptor$ antagonist, markedly reduced the GABA-enhanced pancreatic responses to sodium oleate, CCK plus secretin or CCK alone. The results indicate that GABA enhances the sodium oleate-evoked pancreatic amylase secretion via $GABA_A-receptor$ in anesthetized rats, which may account for elevating the action of CCK released by sodium oleate.

Reduction of Food Intake by Fenofibrate is Associated with Cholecystokinin Release in Long-Evans Tokushima Rats

  • Park, Mi-Kyoung;Han, Ying;Kim, Mi-Sun;Seo, Eun-Hui;Kang, Soo-Jeong;Park, So-Young;Koh, Hyeong-Jong;Kim, Duk-Kyu;Lee, Hye-Jeong
    • The Korean Journal of Physiology and Pharmacology
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    • 제16권3호
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    • pp.181-186
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    • 2012
  • Fenofibrate is a selective peroxisome proliferator-activated receptor ${\alpha}$ ($PPAR{\alpha}$) activator and is prescribed to treat hyperlipidemia. The mechanism through which $PPAR{\alpha}$ agonists reduce food intake, body weight, and adiposity remains unclear. One explanation for the reduction of food intake is that fenofibrate promotes fatty acid oxidation and increases the production of ketone bodies upon a standard experimental dose of the drug (100~300 mg/kg/day). We observed that low-dose treatment of fenofibrate (30 mg/kg/day), which does not cause significant changes in ketone body synthesis, reduced food intake in Long-Evans Tokushima (LETO) rats. LETO rats are the physiologically normal controls for Otsuka Long-Evans Tokushima Fatty (OLETF) rats, which are obese and cholecystokinin (CCK)-A receptor deficient. We hypothesized that the reduced food intake by fenofibrate-treated LETO rats may be associated with CCK production. To investigate the anorexic effects of fenofibrate in vivo and to determine whether CCK production may be involved, we examined the amount of food intake and CCK production. Fenofibrate-treated OLETF rats did not significantly change their food intake while LETO rats decreased their food intake. Treatment of fenofibrate increased CCK synthesis in the duodenal epithelial cells of both LETO and OLETF rats. The absence of a change in the food intake of OLETF rats, despite the increase in CCK production, may be explained by the absence of CCK-A receptors. Contrary to the OLETF rats, LETO rats, which have normal CCK receptors, presented a decrease in food intake and an increase in CCK production. These results suggest that reduced food intake by fenofibrate treatment may be associated with CCK production.

정신질환에 있어서의 신경펩타이드 연구 - Endorphin과 cholecystokinin을 중심으로 - (Neuropeptides in Clinical Psychiatric Research : Endorphins and Cholecystokinins)

  • 김영훈;심주철
    • 생물정신의학
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    • 제5권1호
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    • pp.34-45
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    • 1998
  • 단가아민 신경전달물질과 신경펩타이드의 가장 큰 차이점은 합성과정에 있다. 시냅스에서의 활동과 비활성화 과정에서도 양자의 차이는 뚜렷하다. 단가아민 신경전달물질의 작용은 매우 단시간 내에 일어나며, 대개는 재흡수기전을 통해 활동이 정지되고, 일부가 효소반응에 의해 비활성물질로 대사된다. 또한 이들은 단가아민 신경전달물질들과 마찬가지로 presynaptic peptidergic receptor를 갖는다는 사실이 알려져 있으며, 신경펩타이드 분비를 조절하는 자가수용체도 갖고 있다. 신경펩타이드의 시냅스전 세포로의 재흡수기전에 대해서는 아직 밝혀져 있지 않다. 신경펩타이드들도 시냅스 후막의 수용체로 확산되어 이차전령, 삼차전령을 통해 생물학적 반응을 일으킨다는 것은 단가아민 신경전달 물질과 동일하다. 본래 신경세포는 자극에 의해 glycoproteins, enzymes, inorganic ions, metal ions, phospholipids, purines, amines, peptides 등의 물질들을 함께 분비한다. 이들 중에는 신경전달물질의 기준에 부합되는 것도 있으나, 대다수는 기능이 없다. 때로는 수 종류의 신경전달물질들과 신경신경펩타이드들이 한가지 신경전달물질의 분비에 관여하기도 한다. 저자들은 현재 임상연구에서 괄목할 만한 진전을 보이고 있는 두가지 신경펩타이드들에 대해 그 신경생물학적 측면과 임상적 측면을 고찰하였다. 알코올의 신경생리에 있어 가장 흥미있는 것은 아마 강화기전일 것이다. 내인성 opioid계 물질들이 알코올의 강화효과와 관계가 있다는 근거들은 많다. Naltrexone은 수용체 차단을 통해 이러한 강화기전을 차단함으로서 음주욕을 감소시키는 것으로 해석된다. Opioid reinforcement는 변연계의 도파민 활성화를 통해 이루어진다. 이는 알코올의 강화에 도파민이 관여한다는 사실과도 관계된다. 이를 도파민-알코올 강화 가설이라 한다. 기타 세로토닌도 알코올의 강화를 중재하는 신경전달물질로 생각되고 있다. 선택적 세로토닌 재흡수 차단제를 장기간 사용하거나, $5-HT_3$ 수용체 길항제를 사용하면 음주욕이 감소된다고 알려져 있다. 신경전달물질계간에는 중요한 상호작용이 있다. 알코올이 측중격핵에서 도파민의 분비를 촉진시키는 기전에도 여러 신경전달계의 상호작용이 관여된다. 이의 기전에 생리적 수준에서 관여되는 대표적인 물질로는 (1) opiates, (2) serotonin, (3) amino acids, (4) 기타 neuropeptide들을 들 수 있다. Opiate 수용체 길항제들은 측중격핵에서 도파민 분비를 차단하고, $5-HT_3$ 수용체 효현제는 이를 자극한다. 이들을 총체적으로 종합하면, 도파민, 세로토닌, opiate 수용체들을 조절하면 알콜리즘을 치료할 수 있다는 것이다. CCK는 흥분성 신경전달물질로 밝혀지고 있으며, 진통 및 morphine에 대한 내성형성, 포만, 기억 등의 정신병리에 일부 관여하나, 역시 최근 가장 주목을 받는 것은 CCK계가 불안의 병리에 관여한다는 소견이다. 이 분야의 연구에 기폭제가 된 것은 CCK-4가 공황발작을 유발한다는 임상 연구결과로부터 비롯된다. 이에 의한 불안반응은 자연유발된 공황발작과 거의 같으며, 정상인과 공황장애 환자를 구별하는 민감도를 갖고 있다. 이 CCK-4에 의해 유발된 공황발작은 $CCK_B$ 길항제들에 의해 차단된다. 즉 공황불안의 기전에 $CCK_B$ 수용체가 관여할 가능성이 있다. 따라서 공황발작이 $CCK_B$ 수용체의 민감도 결함으로 추정될 수 있다. 또한 이 반응은 imipramine과 benzodiazepine계 약물들에 의해 차단됨이 알려져 있다. 이 공황 불안의 형성 기전에 다른 신경전달계와의 상호작용이 있다. 본고에서는 특히 benzodiazepine계와의 상호작용 및 5-HT계와의 상호작용을 거론하였다. 향후 CCK 길항제들이 항불안제로 개발될 전망이다. 이들은 내성형성, 금단증상, 진정작용 등의 문제가 없으므로 새로운 항불안제로 기대된다.

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이자효소 분비에 관여하는 세포 내 조절 단백에 대한 연구 (Studies on Intracellular Regulatory Proteins of Pancreatic Exocrine Secretion)

  • 정구용;최재원;최홍순;김경환
    • 대한약리학회지
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    • 제32권2호
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    • pp.243-257
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    • 1996
  • CCK and cholinergic agonist stimulate enzyme release from the pancreatic acini via G-protein-mediated activation of phospholipase C, In contrast secretin and related peptides increase the level of cAMP and activate cAMP-dependent protein kinase. Camostat, a synthetic protease inhibitor, causes pancreatic hypertrophy and hyperplasia by increasing the CCK release. In this study, the secretagogue-induced changes of intracellular proteins were examined in the dispersed pancreatic acini of rats with or without camostat treatment. Camostat(FOY-305, 200 mg/kg, p.o.) was given for 4 days twice daily and the dispersed acini were prepared at 12 bouts after last treatment. The profiles of Intracellular phosphoproteins were analyzed by two-dimensional gel electrophoresis after incubating the acini with $^{32}P$. The amylase release from the dispersed acini was measured. The pancreatic weight was increased to 126% of control, while amylase activity per mg acinar protein decreased to 41% of control, The maximum response of amylase release from dispersed acini to CCK-8 or carbachol was markedly decreased(65% or 46% of control, respectively). The group of intracellular proteins(24 kD, pI $4.5{\sim}8.5$) was increased in quantity by camostat. CCK-8 or secretin increased phosphorylation of a protein(34 kD, pI 4.7) in camostat-treated as well as control rats. CCK-8 increased tyrosine phosphoryiation in the acini of control rats. However, in camostat-treated rats, the basal level of tyrosine phosphorylation was increased and it was rather decreased by CCK-8. Secretin had no effect on the level of tyrosine phosphorylation in acini. These results indicate that both phospholipase C and adenylate cyclase induce phosphorylation of an intracellular acinar protein(34 kD, pI 4.7) and camostat treatment increases the basal level of tyrosine phosphorylation in acinar cells. And these results suggest that not only serine/threonine protein kinase but also protein tyrosine kinase/phosphatase are involved in the process of CCK receptor mediated stimulation-secrelion coupling.

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토끼 십이지장구의 운동성에 미치는 dopamine의 영향 (Role of Dopamine on Motility of Duodenal bulb in rabbits)

  • 이윤렬;신원임;박형진
    • The Korean Journal of Physiology
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    • 제20권2호
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    • pp.192-198
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    • 1986
  • dopamine이 십이지장구를 포함한 소장의 운동성에 미치는 영향, cholecystokinin이 dopamine의 작용에 미치는 영향 그리고 이들 작용의 신경성 기전을 알아보고자 다음과 같은 실험을 실시하였다. ether로 마취한 토끼 54마리에서 십이지장구, 십이지장, 공장 그리고 회장을 적출하고 절편(길이 1cm)을 만들어 Krebs-Ringr 용액이 채워진 기록 용기에 넣고 자발적인 등장성 수축을 기록하였다. Krebs-Ringr 용액에는 5% $Co_2$를 함유하는 $O_2$를 계속 공급하였으며, 용액의 온도가 $37^{\circ}C$를 유지하도록 하였다. 자발적 수축이 시작하고 20분이 경과한 다음 dopamine($10^{-4}M$), CCK-8($10^{-8}M$), dopamine($10^{^6}M$)등을 투여하면서 수축성을 관찰하여 다음과 같은 결과를 얻었다. 1) dopamine은 소장의 모든 부위에서 자발적 수축성을 억제하였으며, 이러한 dopamine의 작용은 회장을 제외한 다른 부위에서 tetrodotoxin에 의하여 유의하게 감소하였다. 2) domperidone은 소장의 모든 부위에서 dopamine의 억제작용에 길항적으로 작용하였으며, tetrodotoxin을 전처치하면 회장을 제외한 다른 부위에서 domperidone의 길항작용은 완전히 소실되었다. 3) CCK-8는 소장의 모든 부위에서 dopamine의 작용을 감소시켰으며, tetrodotoxin을 전처치하면 CCK-8의 작용은 유의하게 감소되었다. 이상의 결과로 미루어 보아 dopamine은 십이지장구를 포함한 모든 소장의 수축성을 억제하며, CCK-8는 dopamine의 억제 작용을 감소시키는데, 이러한 작용들은 장관내 신경계를 거쳐서 간접적으로 일어나는 것으로 생각된다.

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NO/cGMP Pathway is Involved in Exocrine Secretion from Rat Pancreatic Acinar Cells

  • Ahn, Seong-Hoon;Seo, Dong-Wan;Ko, Young-Kwon;Sung, Kae-Suk;Bae, Gyu-Un;Yoon, Jong-Woo;Hong, Sung-Youl;Han, Jeung-Whan;Lee, Hyang-Woo
    • Archives of Pharmacal Research
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    • 제21권6호
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    • pp.657-663
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    • 1998
  • The enzyme responsible for the synthesis of nitric oxide (NO) from L-arginine in mammalian tissues is known as nitric oxide synthase (NOS) (EC.1.14.13.39). In the present study, the role of NO in the regulation of exocrine secretion was investigated in rat pancreatic acinar cells. Treatment of rat pancreatic acinar cells with cholecystokinin-octapeptide (CCK-OP) resulted in an increase in the arginine conversion to citrulline, the amount of $NO_X$, the release of amylase, and the level of CGMP. Especially, CCK-OP-stimulated increase of arginine to citrulline transformation, the amount of $NO_X$, and CGMP level were completely counteracted by the inhibitor of NOS, NG-monomethyl-L-arginine (MMA), by contrast, that of amylase release was partially reduced. Furthermore, MMA-induced decrease of NOS activity and amylase release showed dose-dependent pattern. The data on the time course of CCK-OP-induced citrulline formation and CGMP rise indicate that NOS and guanylate cyclase were activated by treatment of CCK-OP. However, the mechanism of agonist-stimulated guanylate cyclase activation in acinar cells remains unknown. Therefore, activation of NOS is one of the early events in receptor-mediated cascade of reactions in pancreatic acinar cells and NO, not completely, but partially mediate pancreatic enzyme exocrine secretion.

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Effects of ${\gamma}-Aminobutyric$ Acid on Intrinsic Cholinergic Action in Exocrine Secretion of Isolated, Perfused Rat Pancreas

  • Park, Yong-Deuk;Park, Hyung-Seo;Cui, Zheng-Yun;Park, Hyoung-Jin
    • The Korean Journal of Physiology and Pharmacology
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    • 제7권3호
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    • pp.169-174
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    • 2003
  • ${\gamma}$-Aminobutyric acid (GABA) has been reported to enhance exocrine secretion evoked not only by secretagogues but also by intrinsic neuronal excitation in the pancreas. The pancreas contains cholinergic neurons abundantly that exert a stimulatory role in exocrine secretion. This study was undertaken to examine effects of GABA on an action of cholinergic neurons in exocrine secretion of the pancreas. Intrinsic neurons were excited by electrical field stimulation (EFS; 15 V, 2 msec, 8 Hz, 45 min) in the isolated, perfused rat pancreas. Tetrodotoxin or atropine was used to block neuronal or cholinergic action. Acetylcholine was infused to mimic cholinergic excitation. GABA $(30{\mu}M)$ and muscimol $(10{\mu}M)$, given intra-arterially, did not change spontaneous secretion but enhanced cholecystokinin (CCK; 10 pM)-induced secretions of fluid and amylase. GABA (3, 10, $30{\mu}M$) further elevated EFS-evoked secretions of fluid and amylase dose-dependently. GABA (10, 30, $100{\mu}M$) also further increased acetylcholine $(5{\mu}M)$-induced secretions of fluid and amylase in a dose-dependent manner. Bicuculline $(10{\mu}M)$ effectively blocked the enhancing effects of GABA $(30{\mu}M)$ on the pancreatic secretions evoked by either EFS or CCK. Both atropine $(2{\mu}M)$ and tetrodotoxin $(1{\mu}M)$ markedly reduced the GABA $(10{\mu}M)$-enhanced EFS- or CCK-induced pancreatic secretions. The results indicate that GABA enhances intrinsic cholinergic neuronal action on exocrine secretion via the $GABA_A$ receptors in the rat pancreas.

Overexpression of cholinergic receptor nicotinic gamma subunit inhibits proliferation and differentiation of bovine preadipocytes

  • Jiawei, Du;Hui, Zhao;Guibing, Song;Yuan, Pang;Lei, Jiang;Linsen, Zan;Hongbao, Wang
    • Animal Bioscience
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    • 제36권2호
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    • pp.200-208
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    • 2023
  • Objective: Muscle acetylcholine receptors have five alpha subunits (α, β, δ, ε, or γ), and cholinergic receptor nicotinic gamma subunit (CHRNG) is the γ subunit. It may also play an essential role in biological processes, including cell differentiation, growth, and survival, while the role of CHRNG has not been studied in the literature. Therefore, the purpose of this study is to clarify the effect of CHRNG on the proliferation and differentiation of bovine preadipocytes. Methods: We constructed a CHRNG overexpression adenovirus vector and successfully overexpressed it on bovine preadipocytes. The effects of CHRNG on bovine preadipocyte proliferation were detected by Edu assay, cell counting Kit-8 (CCK-8), real-time fluorescence quantitative polymerase chain reaction (RT-qPCR), Western blot and other techniques. We also performed oil red O, RT-qPCR, Western blot to explore its effect on the differentiation of preadipocytes. Results: The results of Edu proliferation experiments showed that the number of EDU-positive cells in the overexpression group was significantly less. CCK-8 experiments found that the optical density values of the cells in the overexpression group were lower than those of the control group, the mRNA levels of proliferating cell nuclear antigen (PCNA), cyclin A2 (CCNA2), cyclin B1 (CCNB1), cyclin D2 (CCND2) decreased significantly after CHRNG gene overexpression, the mRNA levels of cyclin dependent kinase inhibitor 1A (CDKN1A) increased significantly, and the protein levels of PCNA, CCNB1, CCND2 decreased significantly. Overexpression of CHRNG inhibited the differentiation of bovine preadipocytes. The results of oil red O and triglyceride determination showed that the size and speed of lipid droplets accumulation in the overexpression group were significantly lower. The mRNA and protein levels of peroxisome proliferator activated receptor gamma (PPAR class="checkNonKBPoint">γ), CCAAT enhancer binding protein alpha (CEBPα), fatty acid binding protein 4 (FABP4), fatty acid synthase (FASN) decreased significantly. Conclusion: Overexpression of CHRNG in bovine preadipocytes inhibits the proliferation and differentiation of bovine preadipocytes.

miR-140 inhibits porcine fetal fibroblasts proliferation by directly targeting type 1 insulin-like growth factor receptor and indirectly inhibiting type 1 insulin-like growth factor receptor expression via SRY-box 4

  • Geng, Hongwei;Hao, Linlin;Cheng, Yunyun;Wang, Chunli;Wei, Wenzhen;Yang, Rui;Li, Haoyang;Zhang, Ying;Liu, Songcai
    • Asian-Australasian Journal of Animal Sciences
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    • 제33권10호
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    • pp.1674-1682
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    • 2020
  • Objective: This study aimed to elucidate the effect of miR-140 on the proliferation of porcine fetal fibroblasts (PFFs) and identify the target genes of miR-140 in PFFs. Methods: In this study, bioinformatics software was used to predict and verify target genes of miR-140. Quantitative polymerase chain reaction and western blot were used to detect the relationship between miR-140 and its target genes in PFFs. Dual luciferase reporter gene assays were performed to assess the interactions among miR-140, type 1 insulin-like growth factor receptor (IGF1R), and SRY-box 4 (SOX4). The effect of miR-140 on the proliferation of PFFs was measured by CCK-8 when PFFs were transfected with a miR-140 mimic or inhibitor. The transcription factor SOX4 binding to promoter of IGF1R was detected by chromatin immunoprecipitation assay (ChIP). Results: miR-140 directly targeted IGF1R and inhibited proliferation of PFFs. Meanwhile, miR-140 targeted transcription factor SOX4 that binds to promoter of porcine IGF1R to indirectly inhibit the expression of IGF1R. In addition, miR-140 inhibitor promoted PFFs proliferation, which is abrogated by SOX4 or IGF1R knockdown. Conclusion: miR-140 inhibited PFFs proliferation by directly targeting IGF1R and indirectly inhibiting IGF1R expression via SOX4, which play an important role in the development of porcine fetal.