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募集型与非募集型棕色、“米色”和白色脂肪组织的分子特征。

Recruited vs. nonrecruited molecular signatures of brown, "brite," and white adipose tissues.

机构信息

The Wenner-Gren Institute, The Arrhenius Laboratories F3, Stockholm University, Stockholm, Sweden.

出版信息

Am J Physiol Endocrinol Metab. 2012 Jan 1;302(1):E19-31. doi: 10.1152/ajpendo.00249.2011. Epub 2011 Aug 9.

DOI:10.1152/ajpendo.00249.2011
PMID:21828341
Abstract

Mainly from cell culture studies, a series of genes that have been suggested to be characteristic of different types of adipocytes have been identified. Here we have examined gene expression patterns in nine defined adipose depots: interscapular BAT, cervical BAT, axillary BAT, mediastinic BAT, cardiac WAT, inguinal WAT, retroperitoneal WAT, mesenteric WAT, and epididymal WAT. We found that each depot displayed a distinct gene expression fingerprint but that three major types of depots were identifiable: the brown, the brite, and the white. Although differences in gene expression pattern were generally quantitative, some gene markers showed, even in vivo, remarkable depot specificities: Zic1 for the classical BAT depots, Hoxc9 for the brite depots, Hoxc8 for the brite and white in contrast to the brown, and Tcf21 for the white depots. The effect of physiologically induced recruitment of thermogenic function (cold acclimation) on the expression pattern of the genes was quantified; in general, the depot pattern dominated over the recruitment effects. The significance of the gene expression patterns for classifying the depots and for understanding the developmental background of the depots is discussed, as are the possible regulatory functions of the genes.

摘要

主要从细胞培养研究中,已经确定了一系列被认为是不同类型脂肪细胞特征的基因。在这里,我们研究了九个定义明确的脂肪组织中的基因表达模式:肩胛间 BAT、颈部 BAT、腋窝 BAT、纵隔 BAT、心脏 WAT、腹股沟 WAT、腹膜后 WAT、肠系膜 WAT 和附睾 WAT。我们发现,每个脂肪组织都显示出独特的基因表达特征,但可以识别出三种主要类型的脂肪组织:棕色、米色和白色。尽管基因表达模式的差异通常是定量的,但一些基因标记物甚至在体内也表现出显著的脂肪组织特异性:Zic1 用于经典 BAT 脂肪组织,Hoxc9 用于米色脂肪组织,Hoxc8 用于米色和白色与棕色相反,Tcf21 用于白色脂肪组织。还定量研究了生理诱导的产热功能(冷适应)对基因表达模式的影响;一般来说,脂肪组织模式占主导地位,而招募效应相对较小。讨论了基因表达模式对脂肪组织分类和理解脂肪组织发育背景的意义,以及这些基因可能的调节功能。

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