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抗冻虹鳟(Osmerus mordax)中胞质和线粒体甘油磷酸脱氢酶的分子分析、组织分布及季节性模式

Molecular analysis, tissue profiles, and seasonal patterns of cytosolic and mitochondrial GPDH in freeze-resistant rainbow smelt (Osmerus mordax).

作者信息

Robinson Jason L, Hall Jennifer R, Charman Mark, Ewart K Vanya, Driedzic William R

机构信息

Ocean Sciences Centre, Memorial University of Newfoundland, St. John's, Newfoundland A1C 5S7, Canada.

出版信息

Physiol Biochem Zool. 2011 Jul-Aug;84(4):363-76. doi: 10.1086/660162.

DOI:10.1086/660162
PMID:21743250
Abstract

Rainbow smelt (Osmerus mordax) is an anadromous teleost that, beginning in late fall, accumulates plasma glycerol in excess of 200 mM, which subsequently decreases in the spring. The activity of cytosolic glycerol-3-phosphate dehydrogenase (cGPDH) is higher (i) in liver of smelt than in that of Atlantic salmon and capelin (nonglycerol accumulators), (ii) in liver of smelt maintained at 1°C than in that of smelt held at 8°-10°C, and (iii) in smelt liver than in smelt muscle, heart, brain, or kidney. In addition, transcript levels of cGPDH in liver peak in December during the onset of glycerol production and then decline over the remainder of the season. There are four cGPDH protein isoforms in smelt liver that are present regardless of glycerol production status. A minimum of four cGPDH gene copies identified by Southern blotting provide adequate genetic potential to yield multiple protein isoforms. A full-length cDNA for smelt mitochondrial glycerol-3-phosphate dehydrogenase (mGPDH) was cloned and characterized. The 2,790-bp cDNA contains a 109-bp 5'UTR, a 2,193-bp open reading frame, and a 488-bp 3'UTR; transcripts are ubiquitously expressed in both warm- and cold-acclimated smelt tissues. Smelt mGPDH encodes a 730-aa protein that clusters with that of zebrafish and frog and contains several common structural motifs. mGPDH transcript levels generally increase late in the seasonal glycerol cycle, and mGPDH enzyme activity increases significantly during the glycerol decrease phase. Taken together, these findings suggest that liver cGPDH and mGPDH play a key role in the glycerol accumulation and decrease phases, respectively.

摘要

彩虹香鱼(Osmerus mordax)是一种溯河产卵的硬骨鱼,从深秋开始,其血浆甘油积累量超过200 mM,随后在春季减少。胞质甘油-3-磷酸脱氢酶(cGPDH)的活性在以下情况下更高:(i)香鱼肝中的活性高于大西洋鲑鱼和毛鳞鱼(非甘油积累者)肝中的活性;(ii)在1°C下饲养的香鱼肝中的活性高于在8°-10°C下饲养的香鱼肝中的活性;(iii)在香鱼肝中的活性高于在香鱼肌肉、心脏、大脑或肾脏中的活性。此外,肝中cGPDH的转录水平在12月甘油产生开始时达到峰值,然后在该季节的剩余时间内下降。无论甘油产生状态如何,香鱼肝中都存在四种cGPDH蛋白异构体。通过Southern印迹法鉴定出至少四个cGPDH基因拷贝,这为产生多种蛋白异构体提供了足够的遗传潜力。克隆并表征了香鱼线粒体甘油-3-磷酸脱氢酶(mGPDH)的全长cDNA。这个2790 bp的cDNA包含一个109 bp的5'UTR、一个2193 bp的开放阅读框和一个488 bp的3'UTR;转录本在适应温暖和寒冷环境的香鱼组织中均有广泛表达。香鱼mGPDH编码一种730个氨基酸的蛋白质,该蛋白质与斑马鱼和青蛙的mGPDH聚在一起,并包含几个常见的结构基序。mGPDH转录水平通常在季节性甘油循环后期升高,并且mGPDH酶活性在甘油减少阶段显著增加。综上所述,这些发现表明肝cGPDH和mGPDH分别在甘油积累和减少阶段起关键作用。

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