• 제목/요약/키워드: hormone biosynthesis

검색결과 77건 처리시간 0.031초

Inhibitory Effects of Aqueous Extracts from Nardostachys chinensis on ${\alpha}$-Melanocyte Stimulating Hormone-induced Melanogenesis in B16F10 Cells

  • Lee, Soo-Jin;Choi, Yung-Hyun;Choi, Byung-Tae
    • Animal cells and systems
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    • 제10권4호
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    • pp.233-236
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    • 2006
  • For the purpose of the development of skin-whitening or therapeutic agents against hyperpigmentation, aqueous extract from Nardostachys chinensis (AENC) was evaluated for melanogenesis inhibitory activity in B16F10 melanoma cell. The treatment with AENC at the 0.2, 0.5 and 1.0 mg/ml level significantly inhibits the biosynthesis of melanin compared with untreated control. The tyrosinase activity also significantly decreased in AENC-treated cells at the 0.2 and 0.5 mg/ml level and inhibitory effects were more efficient than commercial arbutin at 0.1 mg/ml. The Western analyses confirmed the significantly decreased expression of tyrosinase and tyrosinase-related protein-2 by AENC treatment. These results indicate that AENC may contribute to the inhibition of melanin biosynthesis through regulating the expression as well as activity of tyrosinase and AENC may be useful as a new candidate in the design of new skinwhitening or therapeutic agents.

Astaxanthin Biosynthesis Enhanced by Reactive Oxygen Species in the Green Alga Haematococcus pluvialis

  • Kobayashi, Makio
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제8권6호
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    • pp.322-330
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    • 2003
  • The unicellular green alga Haematococcus pluvialis has recently attracted great inter-est due to its large amounts of ketocarotenoid astaxanthin, 3,3'-dihydroxy-${\beta}$,${\beta}$-carotene-4,4'-dione, widely used commercially as a source of pigment for aquaculture. In the life cycle of H. pluvialis, astaxanthin biosynthesis is associated with a remarkable morphological change from green motile vegetative cells into red immotile cyst cells as the resting stage. In recent years we have studied this morphological process from two aspects: defining conditions governing astaxanthin biosynthesis and questioning the possible function of astaxanthin in protecting algal cells against environmental stress. Astaxanthin accumulation in cysts was induced by a variety of environmental conditions of oxidative stress caused by reactive oxygen species, intense light, drought, high salinity, and high temperature. In the adaptation to stress, abscisic acid induced by reactive oxygen species, would function as a hormone in algal morphogenesis from veget ative to cyst cells. Furthermore, measurements of both in vitro and in vivo antioxidative activities of astaxanthin clearly demonstrated that tolerance to excessive reactive oxygen species is greater in astaxanthin-rich cysts than in astaxanthin-poor cysts or astaxanthin-less vegetative cells. Therefore, reactive oxygen species are involved in the regulation of both algal morph O-genesis and carotenogenesis, and the accumulated astaxanthin in cysts can function as a protective agent against oxidative stress damage. In this study, the physiological roles of astaxanthin in stress response and cell protection are reviewed.

Bisphenol A Bis(2,3-dihydroxypropyl) ether (BADGE.2H2O) Induces Orphan Nuclear Receptor Nur77 Gene Expression and Increases Steroidogenesis in Mouse Testicular Leydig Cells

  • Ahn, Seung-Won;Nedumaran, Balachandar;Xie, Yuanbin;Kim, Don-Kyu;Kim, Yong Deuk;Choi, Hueng-Sik
    • Molecules and Cells
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    • 제26권1호
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    • pp.74-80
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    • 2008
  • Bisphenol A bis (2,3-dihydroxypropyl) ether ($BADGE.2H_2O$) is a component of commercial liquid epoxy resins commonly used in the food-packing industry and in dental sealants. There is evidence that it has significant estrogenic activity. Nur77 plays a crucial role in the regulation of certain genes involved in LH-mediated steroidogenesis in testicular Leydig cells. It was previously demonstrated that Bisphenol A (BPA) stimulates Nur77 gene induction and steroidogenesis. In this study, we investigated the effects of $BADGE.2H_2O$ on Nur77 gene expression and steroidogenesis. Northern blot analysis showed that it increased the expression of Nur77 mRNA and protein, and transient transfection assays demonstrated that it increased the promoter activity and transactivation of Nur77. It also increased the expression of certain steroidogenic genes, such as StAR and $3{\beta}$-HSD. Finally, over-expression of a dominant negative Nur77 cDNA via adenoviral infection reduced $BADGE.2H_2O$-mediated progesterone biosynthesis. These results indicate that $BADGE.2H_2O$ disrupts testicular steroidogenesis by increasing Nur77 gene expression.

노랑초파리 난황형성과정 제어 신경 메커니즘 (Neuronal Mechanisms that Regulate Vitellogenesis in the Fruit Fly)

  • 김영준;장진
    • 한국응용곤충학회지
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    • 제61권1호
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    • pp.109-115
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    • 2022
  • 난황형성과정(Vitellogenesis)은 발달하는 난모세포에 난황이 축적되는 과정으로, 이 과정의 개시는 알형성과정(oogenesis)을 제어하는 주요 메커니즘이다. 곤충생리학 모델인 노랑초파리(Drosophila melanogaster)에서 난황형성과정은 성충으로 우화한 직후 시작하여 성적 성숙이 일어나는 2-3일간 지속된다. 성숙한 난모세포가 충분히 만들어지고 성적 성숙이 종료되면, 짝짓기 후 알형성과정이 다시 시작될 때까지 난황형성과정은 멈춘다. 수컷 초파리의 정액 단백질인 성 펩타이드(Sex peptide, SP)는 짝짓기의 신호로서 알라타체(corpora allata)를 자극해 유약호르몬(Juvenile hormone, JH) 생합성 및 분비를 유도하며, 혈림프(hemolymph) JH 농도의 증가는 난황형성과정을 자극한다. 최근 연구 결과에 따르면, SP수용체 뉴런은 자궁 내막의 수상돌기를 통해 교미 중 정액과 함께 자궁으로 전달된 SP를 감지함으로써, 축삭돌기를 통해 중추신경계인 복부 신경절에 짝짓기 신호를 보내는데, 이러한 중추신경계 SP 신호가 JH 생합성 및 분비, 그리고 난황형성과정을 유도하는 것으로 밝혀졌다. 짝짓기 후 암컷에서의 난황형성과정은 일주기 리듬을 보이는데, 노랑초파리의 일주기 리듬은 중추 신경계 뉴런들에 의해 제어된다. 본 종설은 성적 성숙, 짝짓기 신호, 그리고 일주기 리듬에 따라 난황형성과정을 제어하는 신경 메커니즘에 관한 최근 연구 성과를 다룬다.

전통발효유 타락의 면역세포 증식 및 멜라닌 생성에의 효과 - 연구노트 - (Effects of Tarak, Korean Traditional Fermented Milk, on Proliferation of Immune Cells and Melanin Biosynthesis)

  • 김소영;최유미;이희라;박지수;한영숙;고성희;장성식;김수아;심재헌;윤현근
    • 한국식품영양과학회지
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    • 제44권11호
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    • pp.1759-1762
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    • 2015
  • 시판 막걸리에서 분리한 균주(Lactobacillus paracasei ssp. paracasei M13-65-3)로 타락을 제조하였다. M13-65-3균주를 이용하여 제조한 타락 추출물에 의하여 T lymphocyte인 Jurkat 세포의 증식이 촉진되었고 피부세포의 멜라닌 생성이 억제되었다. 본 연구의 결과는 타락이 면역 증강 기능성과 피부색소 조절 기능성을 보유할 가능성을 제시하고 있다.

Gibberellins enhance plant growth and ginsenoside content in Panax ginseng

  • Hong, Chang Pyo;Jang, Gwi Yeong;Ryu, Hojin
    • Journal of Plant Biotechnology
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    • 제48권3호
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    • pp.186-192
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    • 2021
  • The roots of Korean ginseng (Panax ginseng) have a long history of usage as a medicinal drug. Ginsenosides, a group of triterpenioid saponins in ginseng, have been reported to show important pharmacological effects. Many studies have attempted to identify the ginsenoside synthesis pathways of P. ginseng and to increase crop productivity. Recent studies have shown that exogenous gibberellin (GA) treatments promote storage root secondary growth by integration of the modulating cambium stem cell homeostasis with a secondary cell wall-related gene network. However, the dynamic regulation of ginsenoside synthesis-related genes and their contents by external signaling cues has been rarely evaluated. In this study, we confirmed that GA treatment not only enhanced the secondary growth of P. ginseng storage roots, but also significantly enriched the terpenoid biosynthesis process in RNA-seq analysis. Consistently, we also found that the expression of most genes involved in the ginsenoside synthesis pathways, including those encoding methylerythritol-4-phosphate (MEP) and mevalonate (MVA), and the saponin content in both leaves and roots was increased by exogenous GA application. These results can be used in future development of biotechnology for ginseng breeding and enhancement of saponin content.

흰쥐의 시상하부외 지역에서의 Growth Hormone Releasing Hormone (GHRH) 유전자발현;뇌하수체내 국부인자로서 Lactotroph분화에 관여할 가능성에 대하여 (Extrahypothalamic Expression of Rat Growth Hormone Releasing Hormone (GHRH);a possible intrapituitary factor for lactotroph differentiation?)

  • 이성호
    • Clinical and Experimental Reproductive Medicine
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    • 제23권3호
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    • pp.269-275
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    • 1996
  • Biosynthesis and secretion of anterior pituitary hormones are under the control of specific hypothalamic stimulatory and inhibitory factors. Among them, Growth Hormone Releasing Hormone (GHRH) is the major stimulator of pituitary somatotrophs activating GH gene expression and secretion. Human GHRH is a polypeptide of 44 amino acids initially isolated from pancreatic tumors, and the gene for the hypothalamic form of GHRH is organized into 5 exons spanning over 10 kilobases (kb) on genomic DNA and encodes a messenger RNA of 700-750 nucleotides. Several neuropeptides classically associated with the hypothalamus have been found in the extrahypothalamic regions, suggesting the existence of novel sources, targets and functions. GHRH-like immunoreactivity has been found in several peripheral sites, including placenta, testis, and ovary, indicating that GHRH may also have regulatory roles in peripheral reproductive organs. Furthermore, higher molecular weight forms of the GHRH transcripts were identified from these organs (1.75 kb in testis; 1.75 and >3 kb in ovary). These tissue-specific expression of GHRH gene suggest the existence of unique regulatory mechanism of GHRH expression and function in these organs. In fact, placenta-specific and testis-specific promoters for GHRH transcripts which are located in about 10 kb upstream region of hypothalamic promoter were reported. The use of unique promoters in extrahypothalamic sites could be refered in a different control of GHRH gene and different functions of the translated products in these tissues. Somatotrophs and lactotrophs have been thought to be derived from a common bipotential progenitor, the somatolactotrophs, which give origins to either phenotypes. Although the precise mechanism responsible for the lactotroph differentiation in the anterior pituitary gland has not been yet clalified, there are several candidators for the generation of lactotrophs. In human, the presence of GHRH peptides with different size from authentic hypothalamic form in the normal anterior pituitary and several types of adenoma were demonstrated. Recently our group found the existence of immunoreactive GHRH and its transcript from the normal rat anterior pituitary (gonadotroph> somatotroph> lactotroph), and the GHRH treatment evoked the increased proliferation rate of anterior pituitary cells in vitro. The transgenic mouse models clearly shown that GHRH or NGF overexpression by anterior pituitary cells induced development of pituitary hyperplasia and adenomas particularly GH-oma and prolactinoma. Taken together, we hypothesize that the pituitary GHRH could serve not only as a modulator of hormone secretion but as a paracrine or autocrine regulator of anterior pituitary cell proliferation and differentiation. Interestingly enough, the expression of Pit-1 homeobox gene (the POU class transcription factor) was confined to somatotrophs, lactotrophs and somatolactotrophs in which GHRH receptors are expressed commonly. Concerning the mechanism of somatolactotroph and lactotroph differentiation in the anterior pituitary, we have focused following two possibilities; (1) changes in the relative levels or interactions of both hypothalamic and intrapituitary factors such as dopamine, VIP, somatostatin, NGF and GHRH; (2) alterations of GHRH-GHRH receptor signaling and Pit-1 activity may be the cause of lactotroph differentiation or pituitary hyperplasia and adenoma formation. Extensive further studies will be necessary to solve these complicated questions.

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Diapause hormone of the silkworm, Bombyx mori : Structure and function

  • Okitsugu Yamashita
    • 한국잠사학회:학술대회논문집
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    • 한국잠사학회 1997년도 Progress and Future Development of Sericultural Science and Technology 40th Anniversary Commemoration Symposium
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    • pp.51-72
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    • 1997
  • Diapause hormone (DH) is a neuropeptide hormone which is secreted from the suboesophageal ganglion (SG) and is responsible for induction of embryonic diapause of the silkworm, Bombyx mori. DH is isolated from SGs and determined to be a 24 amino acid peptide amide. The cDNA encodes the polyprotein precursor from which DH, pheromone biosynthesis activating neuropeptide (PBAN) and three other neuropeptides are released and become matured. The C-terminal FXPRL-NH2 sequence of DH is essential but not sufficient for expression of full activity. Recently, we have isolated a unique hydrohobic peptide (VAP peptide) with a slight diapause egg induceing activity from organic solvent extracts of the male adult heads of the silkworm. The VAP peptide itself has no diapause inducing activity, but enhances DH activity through reducing ED50 value and the threshold concentration of DH. The DH-PBAN gene is composed of 6 exons interrupted by 5 introns and is expressed in 12 neurosecretory cells of the SG. The incubation of eggs at 25$^{\circ}C$, which induces embryonic diapause in the progeny, caused DH-PBAN mRNA content to increase at 5 different stages in the life cycle. By contrast, a 15$^{\circ}C$ incubation only induced expression of the gene at the late phrase adult stage. The temperature-controlled expression of DH-PBAN gene is closely correlated to the incidence of diapause, indicating that DH-PBAN gene expression is the initial event leading to diapause induction. DH acts to stimulate trehalase activity in developing ovary to bring about hyprglycogenism in mature eggs, a prerequisite metabolism for diapause initiation. Using in vivo and in vitro systems, DH is clearly shown to induce trehalase gene expression in developing ovaries. New protein synthesis is not needed for this process, but a Ca2+-dependent proteinkinase seems to be involved. Quite recently, we have sucessfully applied a new and potent trehalase inhibitor (Trehazoline) to reudce glycogen content in developing ovaries. The eggs deficient in glycogen were also able to enter diapause as the natural eggs do, so that we could provide the new egg system to reconsider the diapause associated metabolism other than the glycogen-sorbitol metabolic system.

수컷 흰쥐의 시상하부-뇌하수체 축 호르몬 유전자 발현에 미치는 6-Hydroxydopamine(6-OHDA)의 영향 (Effect of 6-Hydroxydopamine (6-OHDA) on the Expression of Hypothalamus-Pituitary Axis Hormone Genes in Male Rats)

  • 허현진;안련섭;이성호
    • 한국발생생물학회지:발생과생식
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    • 제13권4호
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    • pp.257-264
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    • 2009
  • 6-hydroxydopamine(6-OHDA)는 파킨슨 질환 동물 모델의 제조에 널리 사용되는 신경독소로 도파민성 뉴런에 대한 특이적인 독성을 나타낸다. 도파민 신호는 중추신경계의 광범위한 영역에서 생리 기능을 조절하는데, 이에 따라 파킨슨병 환자와 6-OHDA를 처리한 동물들의 신경내분비 활성에 극심한 변화가 있을 것으로 예상할 수 있다. 하지만 6-OHDA 주사 모델에서 시상하부-뇌하수체 신경내분비 회로에 관한 연구들은 전무한 실정이다. 본 연구는 6-OHDA에 의한 뇌 카테콜아민 합성의 차단이 성체 수컷 흰쥐의 시상하부-뇌하수체 호르몬 유전자들의 전사 활성에 일으키는 변화를 조사한 것이다. 생후 3개월의 수컷 흰쥐(SD strain)에 개체 당 $200{\mu}g$의 6-OHDA를 $10{\mu}\ell$의 생리식염수에 녹여 뇌실 내 주사(icv)하였고, 2주 후에 모든 실험동물들을 희생시켰다. 시상하부-뇌하수체 호르몬 유전자들의 mRNA 수준을 조사하기 위해 total RNA를 추출하여 반-정량적 RT-PCR을 시행하였다. 카테콜아민 생합성에서 속도조절효소로 작용하는 tyrosine hydroxylase(TH)의 경우 6-OHDA군에서 대조군에 비해 유의한 발현 감소가 나타났고(대조군:6-OHDA군=1:0.72${\pm}$0.02AU, p<0.001), 이를 통해 6-OHDA 주사의 효력을 확인 하였다. 시상하부에서 gonadotropin-releasing hormone(GnRH)과 corticotropin releasing hormone(CRH)의 mRNA 수준은 6-OHDA군이 대조군에 비해 유의하게 낮았다(GnRH, 대조군:6-OHDA군=1:0.39${\pm}$0.03AU, p<0.001; CRH, 대조군:6-OHDA군=1:0.76${\pm}$0.07AU, p<0.01). 뇌하수체에서 glycoprotein hormone들의 공통적인 alpha subunit(Cg$\alpha$)과 LH beta subunit(LH-$\beta$) 그리고 FSH beta subunit(FSH-$\beta$)의 mRNA 수준의 경우 모두 6-OHDA군에서 대조군에 비해 유의한 감소를 나타냈다(Cg$\alpha$, 대조군:6-OHDA군=1:0.81${\pm}$0.02AU, p<0.001; LH-$\beta$, 대조군:6-OHDA군=1:0.68${\pm}$0.04AU, p<0.001; FSH-$\beta$, 대조군:6-OHDA군=1:0.84${\pm}$0.05AU, p<0.01). 이와 유사하게, 6-OHDA군에서의 뇌하수체 adrenocorticotrophic hormone(ACTH) 전사 수준 역시 대조군에 비해 유의하게 낮았다(대조군:6-OHDA군=1:0.86${\pm}$0.04AU, p<0.01). 본 연구는 중추신경계로의 도파민 신경독소 주입에 의해 두 가지의 시상하부-뇌하수체 신경내분비 회로인 GnRH-성선자극호르몬 회로와 CRH-ACTH 회로의 전사 활성이 하향 조정됨을 증명하였다. 이러한 결과는 시상하부로의 CA 입력은 시상하부-뇌하수체 기능 조절을 통해 생식소와 부신의 활성에 영향을 미침을 시사하는 것으로, 파킨슨병 환자들에게서 빈번하게 발생하는 성 기능 장애와 열악한 스트레스 반응을 설명할 단서를 제공한다.

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한냉에 노출된 흰쥐에서 갑상선 호르몬이 체열 생산인 미치는 영향 (Effect of Cold Exposure on Thyroid Thermogenesis in Rats)

  • 황애란
    • 대한간호학회지
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    • 제13권2호
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    • pp.87-104
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    • 1983
  • It has been well documented that animals exposed to cold show increased activity of thyroid gland. The calorigenic action of thyroid hormone has been demonstrated by a variety of in vivo and in vitro studies. According to Edelman et al., the thyroid thermogenesis is due to activation of energy consuming processes, especially the active sodium transport by the hormone in target tissues. If so, the increase in thyroid activity during cold exposure should induce increased capacity of sodium transport in target tissue and the change in tissue metabolism should be precisely correlated with the change in Na+_K+_ATPase activity of the tissue. This possibility was tested in the present study: in one series, changes in oxygen consumption and Na+_K+_-ATPase activity of liver preparations were measured in rats as a function of thyroid status, in order to establish the effect of thyroid hormone on the tissue respiration and enzyme system in another series, the effect of cold stimulus on the serum thyroid hormone level, hepatic tissue oxygen consumption and Na+_K+_ATPase activity in rats. The results obtained are as follows: 1. The Na+_dependent oxygen consumption of liver slices, the oxygen consumption of liver mitochondria and the Na+_K+_ATPase activity of liver preparations were significantly inhibited in hypothyroidism and activated in hyperthyroidism. Kinetic analysis indicated that the Vmax. of Na+_K+_ATPase was decreased in hypothyroidism and increased in hyperth)'roidism. 2. In cold exposed rats, the serum triiodothyronine (T₃) level increased rapidly during the initial one day of cold exposure, then declined slowly to the control level after two weeks. The serum thyroxine (T₄) level decreased gradually throughout the cold exposure. Accordingly the T₃/T₄ratio increased. The mitochondrial oxygen consumption and the Na+_dependent oxygen consumption of liver slices increased during the first two days and then remained unchanged thereafter The activity of the Na+_K+_ATPase in liver preparations increased during cold exposure with a time course similar to that of oxygen consumption. Kinetic analysis indicated that the Vmax. of Na+_K+_ATPase increased. 3. Once the animal was adapted to cold, induction of hypothyroidism did not significantly alter the hepatic oxygen consumption and Na+_K+_ATPase activity. These results indicate that: 1) thyroid hormone increases capacities of mitochondrial respiration and active sodium transport in target tissues such as liver; 2) the increased T₃level during the initial period of cold exposure facilitates biosynthesis of Na+_K+_ATPase and mitochondrial enzymes for oxidative phosphorylation, leading to enhanced production and utilization of ATP, hence heat production.

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