• 제목/요약/키워드: GDNF

검색결과 29건 처리시간 0.023초

GDNF secreted by pre-osteoclasts induces migration of bone marrow mesenchymal stem cells and stimulates osteogenesis

  • Yi, Sol;Kim, Jihee;Lee, Soo Young
    • BMB Reports
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    • 제53권12호
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    • pp.646-651
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    • 2020
  • Bone resorption is linked to bone formation via temporal and spatial coupling within the remodeling cycle. Several lines of evidence point to the critical role of coupling factors derived from pre-osteoclasts (POCs) during the regulation of bone marrow-derived mesenchymal stem cells (BMMSCs). However, the role of glial cell-derived neurotrophic factor (GDNF) in BMMSCs is not completely understood. Herein, we demonstrate the role of POC-derived GDNF in regulating the migration and osteogenic differentiation of BMMSCs. RNA sequencing revealed GDNF upregulation in POCs compared with monocytes/macrophages. Specifically, BMMSC migration was inhibited by a neutralizing antibody against GDNF in pre-osteoclast-conditioned medium (POC-CM), whereas treatment with a recombinant GDNF enhanced migration and osteogenic differentiation. In addition, POC-CM derived from GDNF knock-downed bone marrow macrophages suppressed BMMSC migration and osteogenic differentiation. SPP86, a small molecule inhibitor, inhibits BMMSC migration and osteogenic differentiation by targeting the receptor tyrosine kinase RET, which is recruited by GDNF into the GFRα1 complex. Overall, this study highlights the role of POC-derived GDNF in BMMSC migration and osteogenic differentiation, suggesting that GDNF regulates bone metabolism.

GDNF Enhances Hs683 Human Glioma Cell Migration: Possible Involvement of MAPKs

  • Song , Hyun;Chung, Dong-June;Choung, Pill-Hoon;Moon , A-Ree
    • 대한약학회:학술대회논문집
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    • 대한약학회 2002년도 Proceedings of the Convention of the Pharmaceutical Society of Korea Vol.2
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    • pp.326.2-327
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    • 2002
  • Glial cell-derived neurotrophic factor (GDNF) is a potent neurotrophic factor that enhances survival of midbrain doparminergic neuron. GDNF and its receptors are widely distributed in brain and are believed to be involved in the control of neuron survival and differentiation. In this study, we examined the effect of GDNF on proliferation and migration of Hs683 human glioma cells. GDNF markedly enhances proliferation and migration of Hs683 cells in a dose-dependent manner. (omitted)

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APEX-1은 GDNF/GFRα1 시그널을 통해 세포증식을 조절한다 (APEX-1 Regulates Cell Proliferation through GDNF/GFRα1 Signaling)

  • 김홍범;구루사미 하리하라수단;윤차경
    • 생명과학회지
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    • 제23권10호
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    • pp.1183-1191
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    • 2013
  • APEX-1 (인간 apyrimidinic/apurinic 효소)은 염기성 사이트 및 DNA단일 가닥 결손으로 손상된 DNA을 복구 할 수 있는 다기능 단백질이다. 또한 APEX-1은 많은 전사 인자들의 redox-modifying factor (산화 환원 수정 요소)로서의 역할을 한다고 알려져 있다. 이런 APEX-1의 전사 타겟을 동정하는 것은 APEX-1의 다양한 세포 내 작용 메커니즘을 이해하는데 필수적이다. 따라서 이 논문에서는 먼저 Expression array analysis를 통해 glial cell-derived neurotropic factor receptor ${\alpha}1$ ($GFR{\alpha}1$)을 동정하였다. $GFR{\alpha}1$은 glial cell-derived neurotropic factor (GDNF) family 수용체이며 APEX-1에 의해 발현이 증가된다. APEX-1이 과발현된 세포에서 GDNF처리에 의해 GDNF/$GFR{\alpha}1$ 시그널 타겟인 c-Src가 Tyr418잔기에서 인산화 됨을 관찰하였다. 또한 APEX-1이 과발현된 세포에 GDNF처리하면, 세포증식이 증가함을 보았다. 반면, APEX-1 발현을 siRNA을 이용하여 감소시키면 $GFR{\alpha}1$ 발현과 GDNF에 의한 c-Src 인산화 및 세포증식이 감소함을 확인하였다. 이상의 결과는 APEX-1은 GDNF/$GFR{\alpha}1$ 시그널을 통해 세포 생존과 증식을 조절함을 증명하였다. 따라서 본 연구를 통해 APEX-1의 세포 증식을 조절하는 새로운 기전을 규명하였다.

Involvement of MAPKs in GDNF-induced Proliferation and Migration in Hs683 Glioma Cells

  • Song, Hyun;Moon, A-Ree
    • 대한약학회:학술대회논문집
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    • 대한약학회 2003년도 Proceedings of the Convention of the Pharmaceutical Society of Korea Vol.1
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    • pp.223.2-224
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    • 2003
  • Glial cell-derived neurotrophic factor (GDNF) is a potent neurotrophic factor that enhances survival of midbrain doparminergic neuron. GDNF and its receptors are widely distributed in brain and are believed to be involved in the control of neuron survival and differentiation. GDNF increased proliferation and migration of Hs683 human giloma and C6 rat giloma cells in a dose-dependent manner. (omitted)

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ROLES OF MAPK PATHWAYS IN GDNF-INDUCED GLIOMA CELL MIGRATION

  • Hyun Song;Chung, Dong-June;Choung, Pill-Hoon;Aree Moon
    • 한국독성학회:학술대회논문집
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    • 한국독성학회 2002년도 Molecular and Cellular Response to Toxic Substances
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    • pp.140-140
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    • 2002
  • Glial cell-derived neurotrophic factor (GDNF) is a potent neurotrophic factor that enhances survival of midbrain doparminergic neuron and is a member of the transforming growth factor-b superfamily. GDNF and its receptors are widely distributed in brain and are believed to be involved in the control of neuron survival, proliferation and differentiation.(omitted)

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Ape1/Ref-1 Stimulates GDNF/GFR ${\alpha}$ 1-mediated Downstream Signaling and Neuroblastoma Proliferation

  • Kang, Mi-Young;Kim, Kweon-Young;Yoon, Young;Kang, Yoon-Sung;Kim, Hong-Beum;Youn, Cha-Kyung;Kim, Dong-Hui;Kim, Mi-Hwa
    • The Korean Journal of Physiology and Pharmacology
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    • 제13권5호
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    • pp.349-356
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    • 2009
  • We previously reported that glial cell line-derived neurotropic factor (GDNF) receptor ${\alpha}$ 1 (GFR ${\alpha}$ 1) is a direct target of apurinic/apyrimidinic endonuclease 1 (Ape1/Ref-1). In the present study, we further analyzed the physiological roles of Ape1/Ref-1-induced GFR ${\alpha}$ 1 expression in Neuro2a mouse neuroblastoma cells. Ape1/Ref-1 expression caused the clustering of GFR ${\alpha}$ 1 immunoreactivity in lipid rafts in response to GDNF. We also found that Ret, a downstream target of GFR ${\alpha}$ 1, was functionally activated by GDNF in Ape1/Ref-1-expressing cells. Moreover, GDNF promoted the proliferation of Ape1/Ref-1-expressing Neuro2a cells. Furthermore, GFR ${\alpha}$ 1-specific RNA experiments demonstrated that the downregulation of GFR ${\alpha}$ 1 by siRNA in Ape1/Ref-1-expressing cells impaired the ability of GDNF to phosphorylate Akt and PLC ${\gamma}$-1 and to stimulate cellular proliferation. These results show an association between Ape1/Ref-1 and GDNF/GFR ${\alpha}$ signaling, and suggest a potential molecular mechanism for the involvement of Ape1/Ref-1 in neuronal proliferation.

허쉬슈프렁병 환아의 무신경절 장관에서 Neural Cell Adhesion Molecule (NCAM) 과 Glial Cell Line-Derived Neurotrophic Factor (GDNF)의 발현 (Expression of Neural Cell Adhesion Molecule (NCAM) and Glial Cell Line-Derived Neurotrophic Factor (GDNF) in Aganglionic Bowel of Hirschsprung's Disease)

  • 오정탁;한애리;손석우;최승훈;한석주;황의호;양우익
    • Advances in pediatric surgery
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    • 제7권1호
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    • pp.15-20
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    • 2001
  • The pathophysiology of Hirschsprung's disease (HD) is not fully understood, but recent studies have disclosed that neural cell adhesion molecule (NCAM) and glial cell line-derived neurotrophic factor (GDNF) play important roles in the formation of aganglionic bowel of Hirschsprung's disease. To evaluate the roles of NCAM and GDNF in HD, immunohistochemical analysis was performed using formalin-fixed and paraffin-embedded tissue sections. On the basis of the results, we tried to evaluate them as diagnostic markers. The specimens were obtained from 7 patients with HD who underwent modified Duhamel operation. The diagnosis was based on the clinical findings and the absence of ganglion cells in the nerve plexuses by routine microscopy. NCAM immunoreactivity was found in the nerve plexuses and scattered nerve fibers in the smooth muscle layers of ganglionic segments. In aganglionic segments, the number of NCAM positive nerve fibers in the smooth muscle layers was significantly reduced compared with ganglionic segments. In two cases the nerve plexuses in aganglionic segments, NCAM was negligible. The smooth muscle cells showed diffuse immunoreactivity for GDNF and the staining intensity was not different in the aganglionic and ganglionic segments. However, higher expression of GDNF in the nerve plexus of the ganglionic segments was noted comparing to aganglionic segments. These data suggest that both NCAM and GDNF may play important roles in pathogenesis of Hirschsprung's disease and immunohistochemical staining for NCAM can be used as an ancillary diagnostic tool for HD.

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광혈전 유도 뇌손상 백서에서 소풍탕(疏風湯)과 tDCS의 적용이 운동기능회복과 GDNF 발현에 미치는 영향 (Effect of Sopung-tang and tDCS on Motor function Recovery and GDNF Expression in Photothrombotic Brain Infarction Induced Rat Model)

  • 심기철;김기도;김경윤;정현우;김계엽
    • 동의생리병리학회지
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    • 제26권6호
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    • pp.894-901
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    • 2012
  • The effect of Sopung-tang(SPT) and trans-cranial direct current stimulation(tDCS) was investigated in photothrombotic brain infarction(PTI) rats. Sprague-Dawley 80 rats, were divided into four groups. group I was experiental control group(n=20), group II was PTI induced and oral administration of SPT(n=20), group III was PTI induced and tDCS administration(n=20) and group IV was PTI induced and SPT and tDCS administration for 28 days on stroke rats(n=20). Analysis the neurological function test, 25 point behavior functional score test, and immunohistochemistric finding of GDNF expression, and electron microscopy assessment In motor behavior test, the outcome of group IV was significantly difference than the other group, and In immunohistochemistric finding, group II, III, IV were increase GDNF expression on 28 days, In electron microscopy finding, the all groups were degenerated of cell organelles, and synaptic plasticity were improvement of group II, III, IV(especially group IV) These results suggest that, 28days application of SPT and tDCS was the motor function and histopathologic, micro-morphological improvement of motor function recovery and positive influence on synaptic plasticity.

소아 연령에서 발견된 medullary sponge kidney (Medullary Sponge Kidney Detected in the Pediatric Age)

  • 정우영;조민현;구영란;임선희;정해일
    • Childhood Kidney Diseases
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    • 제16권2호
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    • pp.109-114
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    • 2012
  • Medullary sponge kidney disease (MSK)는 신장 수질 피라미드부위에서 야기되는 희귀질환으로 collecting precalyceal duct의 낭종성 확장(dilatation)과 ectasia을 특징으로 한다. MSK 환자의 발생 빈도에 대해서는 명확히 알려진 바가 없으며, 특히 소아 청소년 연령에서는 매우 드물게 발견된다. 연구자들은 국내 소아신장학회 회원들을 대상으로 MSK 환자의 전수 조사를 실시하였고 현재까지 문헌상으로 보고된 관련 유전자들인 GDNF, ATP6V1B1, ATP6V0A4 유전자에 대한 분석을 실시하였기에 이를 보고하는 바이다.