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拟南芥中一种具有染色质结构域的DNA甲基转移酶同源物存在多种多态形式。

A DNA methyltransferase homolog with a chromodomain exists in multiple polymorphic forms in Arabidopsis.

作者信息

Henikoff S, Comai L

机构信息

Howard Hughes Medical Institute, Fred Hutchinson Cancer Research Center, Seattle, Washington 98109-1024, USA.

出版信息

Genetics. 1998 May;149(1):307-18. doi: 10.1093/genetics/149.1.307.

Abstract

Chromodomains are thought to mediate protein-protein interactions between chromatin components. We have detected a chromodomain embedded within the catalytic region of a predicted Arabidopsis DNA methyltransferase that is diverged from other eukaryotic enzymes. The 791 residue "chromomethylase" (CMT1) is encoded by a floral transcript that is spliced from 20 exons and is present at only approximately 1/10(-7) of total mRNA. Genomic sequencing reveals an ancient haplotype split at CMT1 between Col-0 + Metz and the other ecotypes examined. In the Col-0 + Metz haplotype, alternative mRNA processing at intron 13 truncates the coding region. In Ler, RLD, and No-0, similar truncation is caused by insertion of an intact retrotransposon, Evelknievel, which is present as a single copy in Ler and RLD and is currently methylated and inactive. Evelknievel is found at this site on a single branch that connects the Ler, RLD, and No-0 ecotypes but is absent from the genomes of all other ecotypes examined. A stop codon within exon 6 of the Metz ecotype confirms that CMT1 is nonessential. Nevertheless, comparison to CMT1 of Cardaminopsis arenosa, an outcrossing relative, indicates conservation for DNA methyltransferase function. We discuss how allelic diversity of CMT1 may reflect loosened selective constraints in a self-fertilizing species such as Arabidopsis thaliana.

摘要

人们认为染色质结构域介导染色质组分之间的蛋白质 - 蛋白质相互作用。我们在一种预测的拟南芥DNA甲基转移酶的催化区域内检测到一个染色质结构域,该酶与其他真核生物酶不同。由20个外显子剪接而成的花转录本编码了791个氨基酸的“染色质甲基化酶”(CMT1),其在总mRNA中仅占约1/10(-7)。基因组测序显示,在CMT1处,Col-0 + Metz与其他检测的生态型之间存在古老的单倍型分裂。在Col-0 + Metz单倍型中,内含子13处的可变mRNA加工截断了编码区域。在Ler、RLD和No-0中,类似的截断是由完整的逆转座子Evelknievel插入引起的,该逆转座子在Ler和RLD中以单拷贝形式存在,目前已甲基化且无活性。Evelknievel在连接Ler、RLD和No-0生态型的单个分支上的这个位点被发现,但在所检测的所有其他生态型的基因组中均不存在。Metz生态型外显子6内的一个终止密码子证实CMT1并非必需。然而,与异交近缘种碎米荠的CMT1比较表明,DNA甲基转移酶功能具有保守性。我们讨论了CMT1的等位基因多样性如何可能反映自花授粉物种如拟南芥中放松的选择限制。

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