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鉴定 COL5A1 基因外显子 64 组织特异性和发育调控的可变剪接。

Characterization of tissue-specific and developmentally regulated alternative splicing of exon 64 in the COL5A1 gene.

机构信息

Department of Genetics, Case Western Reserve University, Cleveland, OH, USA.

出版信息

Connect Tissue Res. 2012;53(3):267-76. doi: 10.3109/03008207.2011.636160. Epub 2011 Dec 7.

Abstract

The COL5A1 gene, a member of the clade B fibrillar collagen gene family, was recently shown to contain two alternatively spliced exons (64A and 64B) that encode 23 amino acids in the carboxyl-terminal propeptide. The two are identical in length, very similar in sequence, and used in a mutually exclusive fashion because of the small intron that separates them. Each COL5A1 allele uses both exons, but a given transcript will contain only one of the two exons. The sequences in other species are highly conserved at the amino acid level. The expression profile of the two isoforms was determined from analysis of RNA levels in a panel of murine tissues. While both isoforms were found in all tissues studied, actively proliferating tissues (liver, lung) used isoform B more often, while a less mitotically active tissue, brain, had a higher proportion of exon 64A. The high degree of conservation between the two exons is consistent with a regional genomic duplication. The presence of the two isoforms as far back as pufferfish (tetraodon) implies an important functional significance. The exact role determined by the two sequences is not known, but involvement in the determination of chain composition of mature type V collagen or regulation of cell activity is possible, given the differences in tissue distribution.

摘要

COL5A1 基因是纤维胶原基因家族 B 簇的一个成员,最近的研究表明其编码羧基端前肽的 23 个氨基酸的基因包含两个交替剪接的外显子(64A 和 64B)。这两个外显子长度相同,序列非常相似,由于它们之间的小内含子,以相互排斥的方式使用。每个 COL5A1 等位基因都使用这两个外显子,但给定的转录本只包含两个外显子中的一个。其他物种的序列在氨基酸水平上高度保守。通过分析一组鼠组织中的 RNA 水平,确定了这两种异构体的表达谱。虽然这两种异构体都存在于所有研究的组织中,但在活跃增殖的组织(肝脏、肺)中更常使用异构体 B,而增殖活性较低的组织(大脑)中则有更高比例的外显子 64A。两个外显子之间的高度保守性与区域基因组重复一致。两种异构体存在于远在河豚(tetraodon)的情况下,暗示着其具有重要的功能意义。尽管在组织分布上存在差异,但这两个序列所决定的确切作用尚不清楚,但它们可能参与了成熟型 V 胶原链组成的决定或细胞活性的调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0157/3999617/2ff18056e6c7/nihms478221f1.jpg

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