• 제목/요약/키워드: neuropeptide

검색결과 183건 처리시간 0.036초

SIFamide and SIFamide Receptor Define a Novel Neuropeptide Signaling to Promote Sleep in Drosophila

  • Park, Sangjin;Sonn, Jun Young;Oh, Yangkyun;Lim, Chunghun;Choe, Joonho
    • Molecules and Cells
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    • 제37권4호
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    • pp.295-301
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    • 2014
  • SIFamide receptor (SIFR) is a Drosophila G protein-coupled receptor for the neuropeptide SIFamide (SIFa). Although the sequence and spatial expression of SIFa are evolutionarily conserved among insect species, the physiological function of SIFa/SIFR signaling remains elusive. Here, we provide genetic evidence that SIFa and SIFR promote sleep in Drosophila. Either genetic ablation of SIFa-expressing neurons in the pars intercerebralis (PI) or pan-neuronal depletion of SIFa expression shortened baseline sleep and reduced sleep-bout length, suggesting that it caused sleep fragmentation. Consistently, RNA interference-mediated knockdown of SIFR expression caused short sleep phenotypes as observed in SIFa-ablated or depleted flies. Using a panel of neuron-specific Gal4 drivers, we further mapped SIFR effects to subsets of PI neurons. Taken together, these results reveal a novel physiological role of the neuropeptide SIFa/SIFR pathway to regulate sleep through sleep-promoting neural circuits in the PI of adult fly brains.

Aqueous Extract of Ma huang Decreases Neuropeptide Y Expression in the Hypothalamus of Rats

  • Shin Mal Soon;Shin Min Chul;Jang Mi Hyean;Chang Hyun Kyung;Kim Chang Ju;Kim Jeong Sean;Kim Ee Hwa
    • 동의생리병리학회지
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    • 제17권4호
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    • pp.1116-1119
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    • 2003
  • Ma huang, the dried plant stem of Ephedra Intermedia Schrenk et CA, is one of the well known medicinal herbs, and has been used for the diaphoretic, antiasthmatic, and diuretic actions. Ma huang is an ephedrine type alkaloid used for the weight loss and energy expenditure. Medications based on the Ma huang have been found to be effective in the treatment of obesity. Neuropeptide Y (NPY), a 36-amino-acid peptide and concentrated in the hypothalamus, stimulates feeding desire and decrease energy expenditure. In the present study, the effect of Ma huang on the expression of NPY in the rat hypothalamus was investigated using immunohistochemistry. The present results demonstrated that Ma huang treatment suppressed weight gain and NPY expression in the hypothalamus depending upon the dosage used. Based on the results, it can be suggested that Ma huang treatment is effective in curbing the desire for food via modulation of NPY expression under the normal conditions.

절식시킨 생쥐와 식욕부진 돌연변이 생쥐의 시상하부와 대뇌겉질에서 Neuropeptide Y와 NADPH-diaphorase의 이중면역조직화학법에 의한 발현 (Expression of Neuropeptide Y(NPY) and NADPH-diaphorase Neurons in the Hypothalamus and Cerebral Cortex of Fasting and Anorexia Mutant Mice(anx/anx).)

  • 김미자
    • Journal of Nutrition and Health
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    • 제33권5호
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    • pp.491-496
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    • 2000
  • Food intake is regulated by both central and peripheral mechanisms. In the central nervous, the hypothalamus acts for autonomic and endocrine homeostasis. The paraventricular nucleus(PVN) of hypothalamus is an imprtant site of interaction in central feeding pathways. Neuroepetide Y(NPY)is one of the most powerful neurochemical stimulants of food intake known. Also brain nitric oxide(NO), known as neurotransmitter, is involved in the mechanisms that regulate food intake. In this experiment, 24h fasting mice and anorexia mutant mice have been to examine the expression of NPY, which is the major neuropeptide increasing food intake. Double staining with NPY and nicotinamide-adenine-dinucleotide-phosphate diaphorase(NADPH-d), followed by immunohistochemical method and image analysis, have been used to observe coexisting neurons and the level of expression of each neurons. The results were as follows. 1) NPY-immunoreactivitys reduced immune response of the hypothalamus, particularly paraventricular nucleus(PVN), in anorexia mutant mice. Decreased level of NPY is assumed to be a major pathological factor in anorexia mutant mice. On the other hand, PVN in hypothalamus of fasting mice showed increased immunoreactivity which is in agreement of other researchers. 2) NPY and NADPH-d double staining revealed coexisting neurons in the cerebral cortex. Fasting mice had a tendency to have increased level of coexisting neurons compared to the control group. Compared to the control group, fasting mice express is not increase level of NPY-immunoreactivity, while anorexia mutant mice tended to have a decreased level.

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Herpes Simplex Virus-1감염에 의한 수초화 뉴우런의 탈수초 (Demyelination of Myelinated Neuronal cells by Infection of Herpes Simplex Virus-1)

  • 김현주;김지영;사영희;홍성갑
    • 한국정보통신학회:학술대회논문집
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    • 한국정보통신학회 2016년도 추계학술대회
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    • pp.919-922
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    • 2016
  • 쥐의 배아의 척수신경절로 부터 슈반세포와 뉴런 세포가 각각 분리되어 배양되었다. in vitro 시스템에서 배양되었다. 정제된 뉴런 세포는 항 유사분열제로 처리하였고 정제한 슈반세포들과 함께 공동배양 하였다. 이 때 수초화 과정이 진행되었다. 이렇게 수초화된 공동 배양에 Herpes simplex virus-1을 감염시켜 탈수초화를 진행 시켰다. 우리는 수초화의 존재를 의미하는 neuropeptide Y의 항체를 이용하여 수초화와 탈수초화를 확인하였다.

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Starfish smooth muscle relaxing activity of SALMFamide isotype peptide and its analog derived from starfish, Asterias rubens

  • Anastasia Kubarova;Hye-Jin Go;Hye Young Oh;Nam Gyu Park
    • Fisheries and Aquatic Sciences
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    • 제25권11호
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    • pp.572-578
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    • 2022
  • An organism's physiological processes and behaviors are regulated by neuropeptides and hormone peptides. The first neuropeptide identified from echinoderms is SALMFamide. The two most well-studied SALMFamide neuropeptides are S1 and S2, which possess myoactivity on apical muscle, tube feet, and the cardiac stomach of starfishes. However, neuropeptide candidates identified from SALMFamide's precursor protein sequence have not been investigated. This study aims to compare the bioactivity of SALMFamide neuropeptides from the starfish Asterias rubens using various starfish muscle preparations. In this study, the bioactivity of the L-type SALMFamide neuropeptides from the starfish A. rubens, AYHTGLPFamide (SALMFa-A) and the derivative AYHSALMFamide (SALMFa-B) was investigated. The neuropeptides were applied on Asterias amurensis apical muscle, tube feet, which revealed that the neuropeptides exhibit relaxing activity on apical muscle but no activity on tube feet. The native SALMFa-A peptide had lower relaxing activity on the apical muscle compared to the derivative peptide SALMFa-B. The relaxing activity of two neuropeptides also was compared with those on the apical muscle of Patiria pectinifera, which revealed relaxing activity as well as SALMFamide-S1 and S2 neuropeptides. Moreover, the investigation of SALMFa-A and SALMFa-B peptides' bioactivity on P. pectinifera cardiac stomach muscle also showed slight relaxing activity.

청서 뇌 줄무늬체에서 neuropeptide Y 면역반응신경세포의 분포 (Neuropeptide Y-immunoreactive neurons in corpus striatum of the Korean squirrel(sciurus vulgalis coreae))

  • 정영길;이남섭;현병화;이철호;오양석;김무강;원무호
    • 대한수의학회지
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    • 제36권1호
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    • pp.39-49
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    • 1996
  • 야생 설치류인 청서 뇌의 줄무늬체에서 neuropeptide Y(NPY) 면역반응신경세포의 분포상태를 관찰하기 위하여 뇌를 4% paraformaldehyde로 관류고정한 전뇌를 $40{\mu}m$의 냉동연속관상절편으로 작성한 후 cresyl violet로 염색하여 전뇌의 각 부분을 구분하고 NPY항체에 대한 면역염색을 실시하였다. 줄무늬체는 속섬유막(internal capsule)보다 앞쪽에서는 꼬리핵(caudate nucleus)과 조가비핵(putamen)이 꼬리-조가 비핵(caudate-putamen)의 한부분으로 구성되어 있는 반면, 속섬유막이 관통하는 부분에서는 꼬리핵, 조가비핵 및 창백핵(globus pallidus)의 세부분으로 구분되었다. 줄무늬체의 NPY면역반응신경세포는 대부분이 중간크기($12-18{\mu}m$)의 세포였다. NPY세포체의 분포는 꼬리-조가비핵과 꼬리핵의 경우에 내측 및 배쪽부분에서 다수 존재하였으며, 조가비핵의 경우는 전체적으로 불규칙하였는데 그중 중심부분이 더욱 적은 수로 관찰되었다. NPY면역반응신경섬유의 밀집도는 전체적으로 낮았으나 반응신경세포체가 많은 부분에서 높은 밀집도를 보였다. 꼬리-조가비핵과 꼬리핵의 경우 내측과 배쪽부분에서 높은 밀집도를 나타내었고 조가비핵의 경우는 불규칙한 밀집도를 보였다. 창백핵에서는 매우 적은 수의 반응섬유들만 관찰되었다. 따라서 청서의 줄무늬체는 꼬리핵, 조가비핵 및 창백핵으로 구분되어 비교적 발달된 구조를 가졌으며, NPY함유 신경세포의 분포형태도 이질성을 나타내는 것으로 보아 줄무늬체의 신경환로가 복잡함을 암시하였다.

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누에 short neuropeptide F receptor (BsNPF-R)의 cDNA cloning (Cloning of the Bombyx mori short neuropeptide F receptor (BsNPF-R) cDNA)

  • 신효정;권기상;홍선미;김홍근;박관호;최지영;김승환;유권;권오유
    • 생명과학회지
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    • 제26권6호
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    • pp.721-726
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    • 2016
  • 누에(Bombyx mori)에서 short neuropeptide F (sNPF) receptor를 encoding하고 있는 cDNA를 cloning하여서 BsNPF-R라고 이름을 붙였다. BsNPF-R는 이미 보고된 sNPF-R들과 아미노산 수준에서 사람(36%), 쥐(34%), 제브라피쉬(35%), 초파리(51%)와 상동성을 보였다. BsNPF-R는 계산적으로 분자량이 42,731 Da이고 원형질막을 관통하는 단백질이다. BsNPF-R 유전자발현은 중장, 후견사선, 말피기관, 정소에서 강한 반면 지방체, 혈세포, 난소에서 약하게 발현하였다. 그리고 합성된 sNPF에 의해서도 BsNPF-R의 유전자발현이 조절되었다.