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虹鳟鱼瘦素受体的选择性剪接变体编码多种循环瘦素结合蛋白。

Alternative splice variants of the rainbow trout leptin receptor encode multiple circulating leptin-binding proteins.

机构信息

Fish Endocrinology Laboratory, Department of Biological and Environmental Sciences, University of Gothenburg, S-40590 Gothenburg, Sweden.

出版信息

Endocrinology. 2013 Jul;154(7):2331-40. doi: 10.1210/en.2012-2082. Epub 2013 May 3.

Abstract

In mammals, leptin (Lep) binding proteins (LepBPs) derived from Lep receptor (LepR) gene or protein bind most of the circulating Lep, but to date, information on LepBPs in nonmammalian vertebrate classes is lacking. This study details the characterization of multiple LepBPs in rainbow trout (Oncorhynchus mykiss), an early poikilothermic vertebrate, and presents the complete coding sequences for 3 of them. Size-exclusion chromatography and cross-linking assay identified plasma proteins bound to Lep ranging from 70 to 100 kDa. LepBPs were isolated from plasma by affinity chromatography, and their binding specificity was assessed by a competitive binding assay. A RIA for LepBPs indicates that plasma LepBP levels decline after fasting for 3 weeks. Immunoblotting of LepBPs using antibodies against different LepR epitopes shows that the LepBPs are indeed LepR isoforms. The alternatively spliced LepR transcripts (LepR(S1-3)) that include only the extracellular segment transcribe the 90-kDa LepBP1, the 80-kDa LepBP2, and the 70-kDa LepBP3, respectively. LepR(S1) generally has lower expression than the long-form LepR in most tissues. LepR(S2) is primarily expressed in adipose tissue, whereas LepR(S3) is expressed abundantly in brain and spleen, and moderately in liver and gills. The mRNA levels of hepatic LepR(S3) increase after 2 weeks of fasting. This study demonstrates a mechanism in fish for the generation of LepBPs that differs from that seen in mammals and indicates that the physiologic action of Lep in these poikilothermic vertebrates can be modulated, both centrally and peripherally, by the differentiated, tissue-specific expression of multiple LepBPs.

摘要

在哺乳动物中,瘦素(Lep)结合蛋白(LepBPs)来源于瘦素受体(LepR)基因或蛋白,可与大部分循环中的瘦素结合,但到目前为止,关于非哺乳动物脊椎动物类别的 LepBPs 的信息还很缺乏。本研究详细描述了虹鳟鱼(Oncorhynchus mykiss)中多种 LepBPs 的特征,虹鳟鱼是一种早期变温脊椎动物,并提供了其中 3 种的完整编码序列。分子筛层析和交联实验鉴定出与 Lep 结合的血浆蛋白大小在 70 到 100 kDa 之间。通过亲和层析从血浆中分离出 LepBPs,并通过竞争结合实验评估其结合特异性。LepBPs 的 RIA 表明,禁食 3 周后,血浆 LepBP 水平下降。使用针对不同 LepR 表位的抗体对 LepBPs 进行免疫印迹显示,这些 LepBPs 确实是 LepR 同工型。包含仅细胞外片段的LepR 剪接转录本(LepR(S1-3))分别转录 90 kDa 的 LepBP1、80 kDa 的 LepBP2 和 70 kDa 的 LepBP3。在大多数组织中,LepR(S1)的表达通常低于长形式 LepR。LepR(S2)主要在脂肪组织中表达,而 LepR(S3)在大脑和脾脏中大量表达,在肝脏和鳃中中度表达。禁食 2 周后,肝脏 LepR(S3)的 mRNA 水平增加。本研究证明了鱼类中 LepBPs 的产生机制与哺乳动物不同,并表明在这些变温脊椎动物中,Lep 的生理作用可以通过多种 LepBPs 的分化、组织特异性表达来进行中枢和外周调节。

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