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鉴定瘦素受体亚型胞质结构域中对于受体异二聚体激活Janus激酶/信号转导及转录激活因子所必需的关键序列元件。

Identification of the critical sequence elements in the cytoplasmic domain of leptin receptor isoforms required for Janus kinase/signal transducer and activator of transcription activation by receptor heterodimers.

作者信息

Bahrenberg Gregor, Behrmann Iris, Barthel Andreas, Hekerman Paul, Heinrich Peter Claus, Joost Hans-Georg, Becker Walter

机构信息

Institut für Pharmakologie und Toxikologie, Medizinische Fakultät der Rheinisch-Westfälische Technische Hochschule Aachen, Aachen D-52057, Germany.

出版信息

Mol Endocrinol. 2002 Apr;16(4):859-72. doi: 10.1210/mend.16.4.0800.

DOI:10.1210/mend.16.4.0800
PMID:11923481
Abstract

Two predominant splice variants of the leptin receptor (LEPR) are coexpressed in leptin-responsive tissues: the long form, LEPRb, characterized as the signal-transducing receptor, and the signaling-defective short form, LEPRa. It is unknown whether heterodimers of these isoforms are capable of signal transduction via the Janus kinase (JAK)/signal transducer and activator of transcription (STAT) pathway. To address this question, chimeric receptors were constructed consisting of the transmembrane and intracellular parts of LEPRb and LEPRa fused with the extracellular domains of either the alpha- or beta-subunit of the IL-5 receptor. This strategy allows the directed heterodimerization of different LEPR cytoplasmic tails and excludes homodimerization. In COS-7 and HEPG2 cells, chimeric receptor heterodimers of LEPRa and LEPRb failed to activate the JAK/STAT pathway, whereas receptor dimers of LEPRb gave rise to the expected ligand-dependent activation of JAK2, phosphorylation of STAT3, and STAT3-dependent promoter activity. Markedly lower amounts of JAK2 were found to be associated with immunoprecipitated LEPRa chimeras than with LEPRb chimeras. Analysis of a series of deletion constructs indicated that a segment of 15 amino acids in addition to the 29 amino acids common to LEPRa and LEPRb was required for partial restoration of JAK/STAT activation. Site-directed mutagenesis of the critical sequence indicated that two hydrophobic residues (Leu896, Phe897) not present in LEPRa were indispensable for receptor signaling. These findings show that LEPRa/LEPRb heterodimers cannot activate STAT3 and identify sequence elements within the LEPR that are critical for the activation of JAK2 and STAT3.

摘要

瘦素受体(LEPR)的两种主要剪接变体在瘦素反应性组织中共表达:长形式LEPRb,其被表征为信号转导受体;以及信号传导缺陷的短形式LEPRa。尚不清楚这些异构体的异二聚体是否能够通过Janus激酶(JAK)/信号转导子和转录激活子(STAT)途径进行信号转导。为了解决这个问题,构建了嵌合受体,其由LEPRb和LEPRa的跨膜和细胞内部分与IL-5受体的α-或β-亚基的细胞外结构域融合而成。这种策略允许不同LEPR细胞质尾巴的定向异二聚化,并排除同二聚化。在COS-7和HEPG2细胞中,LEPRa和LEPRb的嵌合受体异二聚体未能激活JAK/STAT途径,而LEPRb的受体二聚体则导致了预期的JAK2配体依赖性激活、STAT3磷酸化以及STAT3依赖性启动子活性。发现与免疫沉淀的LEPRa嵌合体相关的JAK2量明显低于LEPRb嵌合体。对一系列缺失构建体的分析表明,除了LEPRa和LEPRb共有的29个氨基酸外,还需要一段15个氨基酸的片段来部分恢复JAK/STAT激活。关键序列的定点诱变表明,LEPRa中不存在的两个疏水残基(Leu896、Phe897)对于受体信号传导是必不可少的。这些发现表明LEPRa/LEPRb异二聚体不能激活STAT3,并确定了LEPR内对于JAK2和STAT3激活至关重要的序列元件。

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