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塞内加尔鳎(Solea senegalensis Kaup)中四种载脂蛋白A-IV旁系同源物的基因组特征及表达分析

Genomic characterization and expression analysis of four apolipoprotein A-IV paralogs in Senegalese sole (Solea senegalensis Kaup).

作者信息

Roman-Padilla J, Rodríguez-Rua A, Claros M G, Hachero-Cruzado I, Manchado M

机构信息

IFAPA Centro El Toruño, Junta de Andalucía, Camino Tiro Pichón s/n, 11500 El Puerto de Santa María, Cádiz, Spain.

Departamento de Biología Molecular y Bioquímica, Facultad de Ciencias, Campus de Teatinos s/n, Universidad de Málaga, 29071 Málaga, Spain.

出版信息

Comp Biochem Physiol B Biochem Mol Biol. 2016 Jan;191:84-98. doi: 10.1016/j.cbpb.2015.09.010. Epub 2015 Oct 8.

Abstract

The apolipoprotein A-IV (ApoA-IV) plays a key role in lipid transport and feed intake regulation. In this work, four cDNA sequences encoding ApoA-IV paralogs were identified. Sequence analysis revealed conserved structural features including the common 33-codon block and nine repeated motifs. Gene structure analysis identified four exons and three introns except for apoA-IVAa1 (with only 3 exons). Synteny analysis showed that the four paralogs were structured into two clusters (cluster A containing apoA-IVAa1 and apoA-IVAa2 and cluster B with apoA-IVBa3 and apoA-IVBa4) linked to an apolipoprotein E. Phylogenetic analysis clearly separated the paralogs according to their cluster organization as well as revealed four subclades highly conserved in Acanthopterygii. Whole-mount analyses (WISH) in early larvae (0 and 1day post-hatch (dph)) showed that the four paralogs were mainly expressed in yolk syncytial layer surrounding the oil globules. Later, at 3 and 5dph, the four paralogs were mainly expressed in liver and intestine although with differences in their relative abundance and temporal expression patterns. Diet supply triggered the intensity of WISH signals in the intestine of the four paralogs. Quantification of mRNA abundance by qPCR using whole larvae only detected the induction by diet at 5dph. Moreover, transcript levels increased progressively with age except for apoA-IVAa2, which appeared as a low-expressed isoform. Expression analysis in juvenile tissues confirmed that the four paralogs were mainly expressed in liver and intestine and secondary in other tissues. The role of these ApoA-IV genes in lipid transport and the possible role of apoA-IVAa2 as a regulatory form are discussed.

摘要

载脂蛋白A-IV(ApoA-IV)在脂质运输和摄食调节中起关键作用。在本研究中,鉴定出了四个编码ApoA-IV旁系同源物的cDNA序列。序列分析揭示了保守的结构特征,包括常见的33个密码子块和九个重复基序。基因结构分析确定了四个外显子和三个内含子,但apoA-IVAa1除外(只有3个外显子)。共线性分析表明,这四个旁系同源物被构建成两个簇(簇A包含apoA-IVAa1和apoA-IVAa2,簇B包含apoA-IVBa3和apoA-IVBa4),它们与载脂蛋白E相连。系统发育分析根据其簇组织清楚地分离了旁系同源物,同时还揭示了在棘鳍类中高度保守的四个亚分支。对早期幼虫(孵化后0天和1天(dph))进行的整体分析(WISH)表明,这四个旁系同源物主要在围绕油球的卵黄合胞体层中表达。后来,在3和5 dph时,这四个旁系同源物主要在肝脏和肠道中表达,尽管它们的相对丰度和时间表达模式存在差异。饮食供应引发了这四个旁系同源物在肠道中的WISH信号强度。使用整个幼虫通过qPCR对mRNA丰度进行定量分析,仅在5 dph时检测到饮食诱导。此外,除了作为低表达异构体出现的apoA-IVAa2外,转录水平随年龄逐渐增加。在幼鱼组织中的表达分析证实,这四个旁系同源物主要在肝脏和肠道中表达,在其他组织中次之。讨论了这些ApoA-IV基因在脂质运输中的作用以及apoA-IVAa2作为调节形式的可能作用。

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