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Structure and expression of the variant melanin-concentrating hormonegenes: Only PMCHL1 is transcribed in the developing human braid andencodes a putative protein

机译:变体黑色素浓缩激素基因的结构和表达:在发育中的人类辫子中仅转录PMCHL1并编码一种假定的蛋白质

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摘要

PMCHL1 and PMCNL2 are two copies of the so-called variant melanin-concentrating hormone (MCH) gene that are located, respectively, on human chromosome 5p14 and 5q13 and that emerged recently during primate evolution. They correspond to a 5'-end truncated version of the MCH gene mapped on chromosome 12q23 and encoding a neuropeptide precursor. The gene organization and regulation of the expression of the variant MCH genes in the human brain are the central issues we investigated. First, the structure and fine chromosomal mapping of the 5p and 5q variant MCH genes were established. These revealed several point mutations and length variations of one CA/TA repeat which allow discrimination between each copy. Using a combination of RACE-PCR, RT-PCR, and sequencing analysis, we provided strong evidence for the expression of the PMCHL1 gene but not the PMCHL2 gene in the human fetal, newborn, and adult brains. Sense, potentially coding, RNAs, as well as noncoding antisense RNAs, were identified and displayed a region-specific expression in the human brain. Strikingly, sense unspliced RNAs of the PMCHL1 gene carried a novel open reading frame and may produce an NLS-containing protein of 8 kDa named VMCH-p8. These transcripts were translated in vitro and in transfected COS cells. Therefore, the PMCHL1 gene provides a unique example of the generation of a gene in the Hominoidae lineage which is specifically transcribed in the developing human brain and has the capacity to be translated into a putative novel protein.
机译:PMCHL1和PMCNL2是所谓的变体黑色素浓缩激素(MCH)基因的两个副本,分别位于人类染色体5p14和5q13上,并且最近在灵长类动物进化过程中出现。它们对应于MCH基因的5'端截短形式,位于染色体12q23上并编码神经肽前体。我们研究的核心问题是人脑中MCH基因变异的基因组织和表达调控。首先,建立了5p和5q变异MCH基因的结构和精细的染色体作图。这些揭示了一个CA / TA重复序列的几个点突变和长度变异,从而可以区分每个拷贝。通过结合使用RACE-PCR,RT-PCR和测序分析,我们为人胎儿,新生儿和成人大脑中PMCHL1基因而非PMCHL2基因的表达提供了有力的证据。鉴定出有义,可能编码的RNA和非编码反义RNA,并在人脑中显示区域特异性表达。令人惊讶的是,PMCHL1基因的有义未剪接的RNA携带了一个新的开放阅读框,并可能产生8kDa的含有NLS的蛋白,称为VMCH-p8。这些转录物在体外和转染的COS细胞中翻译。因此,PMCHL1基因提供了在人科谱系中产生该基因的独特例子,该基因在人类大脑发育中被特异性转录,并具有被翻译成推定的新型蛋白质的能力。

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