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内皮素-1 可刺激抵抗素基因的表达。

Endothelin-1 stimulates resistin gene expression.

机构信息

Department of Life Sciences (Y.-C.T., C.-W.L., H.-H.C., Y.-H.K.), National Central University, Jhongli, Taoyuan 32001, Taiwan; Department and Institute of Physiology (C.-C.J.), National Yang Ming University, Taipei 11221, Taiwan; Division of Gastroenterology (Y.-C.K.), Department of Internal Medicine, Taiwan Landseed Hospital, Taoyuan 32449, Taiwan; and Department of Emergency (C.-C.K., Y.-M.H.), Armed Forces Taoyuan General Hospital, Taoyuan 32551, Taiwan.

出版信息

Endocrinology. 2014 Mar;155(3):854-64. doi: 10.1210/en.2013-1847. Epub 2014 Jan 1.

Abstract

Resistin and endothelin (ET)-1 have been reported to inhibit adipogenesis and regulate adipocyte insulin resistance, respectively. Although both hormones interact with each other, the exact signaling pathway of ET-1 to act on resistin gene expression is still unknown. Using 3T3-L1 adipocytes, we investigated the signaling pathways involved in ET-1-stimulated resistin gene expression. The up-regulation of resistin mRNA expression by ET-1 depends on concentration and timing. The concentration of ET-1 that increased resistin mRNA levels by 100%-250% was approximately 100 nM for a range of 0.25-12 hours of treatment. Treatment with actinomycin D blocked ET-1-increased resistin mRNA levels, suggesting that the effect of ET-1 requires new mRNA synthesis. Treatment with an inhibitor of the ET type-A receptor, such as N-[1-Formyl-N-[N-[(hexahydro-1H-azepin-1-yl)carbonyl]-L-leucyl]-D-tryptophyl]-D-tryptophan (BQ610), but not with the ET type-B receptor antagonist N-[(cis-2,6-Dimethyl-1-piperidinyl)carbonyl]-4-methyl-L-leucyl-1-(methoxycarbonyl)-D-tryptophyl-D-norleucine (BQ788), blocked ET-1, increased the levels of resistin mRNA, and phosphorylated levels of downstream signaling molecules, such as ERK1/2, c-Jun N-terminal kinases (JNKs), protein kinase B (AKT), and signal transducer and activator of transcription 3 (STAT3). Moreover, pretreatment of specific inhibitors of either ERK1/2 (1,4-diamino-2,3-dicyano-1,4-bis[2-aminophenylthio]butadiene [U0126] and 2-(2-amino-3-methoxyphenyl)-4H-1-benzopyran-4-one [PD98059], two inhibitors of MEK1), JNKs (SP600125), phosphatidylinositol 3-kinase/AKT (LY294002 and Wortmannin), or Janus kinase 2 (JAK2)/STAT3 ((E)-2-Cyano-3-(3,4-dihydrophenyl)-N-(phenylmethyl)-2-propenamide, AG490) prevented ET-1-increased levels of resistin mRNA and reduced the ET-1-stimulated phosphorylation of ERK1/2, JNKs, AKT, and STAT3, respectively. However, the p38 kinase antagonist 4-[5-(4-Fluorophenyl)-2-[4-(methylsulfonyl)phenyl]-1H-imidazol-4-yl]pyridine (SB203580) did not alter the effect of ET-1. These results imply that ET type-A receptor, ERK1/2, JNKs, AKT, and JAK2, but not ET type-B receptor or p38, are necessary for the ET-1 stimulation of resistin gene expression. In vivo observations that ET-1 increased resistin mRNA and protein levels in sc and epididymal adipose tissues support the in vitro findings.

摘要

抵抗素和内皮素 (ET)-1 已被报道分别抑制脂肪生成和调节脂肪细胞胰岛素抵抗。尽管这两种激素相互作用,但 ET-1 作用于抵抗素基因表达的确切信号通路仍不清楚。使用 3T3-L1 脂肪细胞,我们研究了参与 ET-1 刺激抵抗素基因表达的信号通路。ET-1 上调抵抗素 mRNA 表达的作用取决于浓度和时间。ET-1 增加抵抗素 mRNA 水平 100%-250%的浓度约为 0.25-12 小时处理的 100 nM。用放线菌素 D 处理可阻断 ET-1 增加的抵抗素 mRNA 水平,表明 ET-1 的作用需要新的 mRNA 合成。用 ET 型 A 受体抑制剂(如 N-[1-甲酰基-N-[[(六氢-1H-氮杂环庚-1-基)羰基]-L-亮氨酰]-D-色氨酰]-D-色氨酸(BQ610))处理,但不是用 ET 型 B 受体拮抗剂 N-[[顺式-2,6-二甲基-1-哌啶基]羰基]-4-甲基-L-亮氨酰-1-(甲氧基羰基)-D-色氨酰-D-正亮氨酸(BQ788)),阻断 ET-1,增加抵抗素 mRNA 水平,并磷酸化下游信号分子,如 ERK1/2、c-Jun N 末端激酶 (JNKs)、蛋白激酶 B (AKT) 和信号转导和转录激活因子 3 (STAT3)。此外,ERK1/2(1,4-二氨基-2,3-二氰基-1,4-双[2-氨基苯基硫]丁二烯 [U0126]和 2-(2-氨基-3-甲氧基苯基)-4H-1-苯并吡喃-4-酮 [PD98059],两种 MEK1 抑制剂)、JNKs(SP600125)、磷脂酰肌醇 3-激酶/AKT(LY294002 和 Wortmannin)或 Janus 激酶 2(JAK2)/STAT3((E)-2-氰基-3-(3,4-二氢苯并[d]噻唑-4-基)-N-(苯甲基)-2-丙烯酰胺,AG490)的特异性抑制剂预处理可防止 ET-1 增加抵抗素 mRNA 水平,并分别减少 ET-1 刺激的 ERK1/2、JNKs、AKT 和 STAT3 磷酸化。然而,p38 激酶拮抗剂 4-[5-(4-氟苯基)-2-[4-(甲磺酰基)苯基]-1H-咪唑-4-基]吡啶(SB203580)并没有改变 ET-1 的作用。这些结果表明,ET 型 A 受体、ERK1/2、JNKs、AKT 和 JAK2 是 ET-1 刺激抵抗素基因表达所必需的,但 ET 型 B 受体或 p38 不是。体内观察到 ET-1 增加 sc 和附睾脂肪组织中的抵抗素 mRNA 和蛋白水平,支持了体外研究的结果。

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