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冬眠地松鼠中脂肪型和心脏型脂肪酸结合蛋白的差异表达

Differential expression of adipose- and heart-type fatty acid binding proteins in hibernating ground squirrels.

作者信息

Hittel D, Storey K B

机构信息

Institute of Biochemistry and Department of Biology, Carleton University, 1125 Colonel By Drive, Ottawa, ON K1S 5B6, Canada.

出版信息

Biochim Biophys Acta. 2001 Dec 30;1522(3):238-43. doi: 10.1016/s0167-4781(01)00338-4.

Abstract

The up-regulation of heart- and adipose-type fatty acid binding proteins (H-FABPs and A-FABPs) was detected during hibernation in brown adipose tissue (BAT) of 13-lined ground squirrels, Spermophilus tridecemlineatus, using a commercial rat cDNA array. Full length cDNAs encoding H-FABPs and A-FABPs were subsequently retrieved from a BAT cDNA library. These cDNAs were used to probe Northern blots of total RNA from tissues of euthermic versus hibernating ground squirrels. H-FABP mRNA transcripts increased in BAT, skeletal muscle and heart of hibernating animals whereas A-FABP transcripts, which are normally expressed exclusively in adipose tissue, increased in both BAT and heart during torpor. It is proposed that the increased expression of H-FABPs and A-FABPs during hibernation accelerates the rate at which fatty acids can be transported to the mitochondria for oxidization, particularly in support of the huge increase in thermogenesis by BAT and rapid increase in heart rate that are required during arousal from torpor. Comparison of the deduced polypeptide sequence of ground squirrel H-FABP with that from other mammals also revealed three unique amino acid differences which may be important for protein function at low body temperatures during hibernation.

摘要

利用市售大鼠cDNA阵列,在十三条纹地松鼠(Spermophilus tridecemlineatus)冬眠期间,检测到其褐色脂肪组织(BAT)中心脏型和脂肪型脂肪酸结合蛋白(H-FABPs和A-FABPs)的上调。随后从BAT cDNA文库中获得了编码H-FABPs和A-FABPs的全长cDNA。这些cDNA用于探测来自正常体温和冬眠地松鼠组织的总RNA的Northern印迹。冬眠动物的BAT、骨骼肌和心脏中H-FABP mRNA转录本增加,而通常仅在脂肪组织中表达的A-FABP转录本在蛰伏期间在BAT和心脏中均增加。有人提出,冬眠期间H-FABPs和A-FABPs表达的增加加速了脂肪酸转运到线粒体进行氧化的速率,特别是为了支持BAT产热的大幅增加以及从蛰伏中苏醒时所需的心率快速增加。将地松鼠H-FABP的推导多肽序列与其他哺乳动物的序列进行比较,还发现了三个独特的氨基酸差异,这可能对冬眠期间低温下蛋白质的功能很重要。

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