Smith Tamara H L, Dueck Christine C, Mhanni Aizeddin A, McGowan Ross A
Dept. of Biochemistry, Memorial University, St. John's, NL, Canada.
BMC Dev Biol. 2005 Oct 19;5:23. doi: 10.1186/1471-213X-5-23.
DNA methylation and the methyltransferases are known to be important in vertebrate development and this may be particularly true for the Dnmt3 family of enzymes because they are thought to be the de novo methyltransferases. Mammals have three Dnmt3 genes; Dnmt3a, Dnmt3b, and Dnmt3L, two of which encode active enzymes and one of which produces an inactive but necessary cofactor. However, due to multiple promoter use and alternative splicing there are actually a number of dnmt3 isoforms present. Six different dnmt3 genes have recently been identified in zebrafish.
We have examined two of the dnmt3 genes in zebrafish that are located in close proximity in the same linkage group and we find that the two genes are more similar to each other than they are to the other zebrafish dnmt3 genes. We have found evidence for the existence of several different splice variants and alternative splice sites associated with one of the two genes and have examined the relative expression of these genes/variants in a number of zebrafish developmental stages and tissues.
The similarity of the dnmt3-1 and dnmt3-2 genes suggests that they arose due to a relatively recent gene duplication event. The presence of alternative splice and start sites, reminiscent of what is seen with the human DNMT3s, demonstrates strong parallels between the control/function of these genes across vertebrate species. The dynamic expression levels of these genes/variants suggest that they may well play a role in early development and this is particularly true for dnmt3-2-1 and dnmt3-1. dnmt3-2-1 is the predominantly expressed form prior to zygotic gene activation whereas dnmt3-1 predominates post zygotic gene activation suggesting a distinct developmental role for each.
已知DNA甲基化和甲基转移酶在脊椎动物发育中很重要,对于Dnmt3酶家族而言可能尤其如此,因为它们被认为是从头甲基转移酶。哺乳动物有三个Dnmt3基因;Dnmt3a、Dnmt3b和Dnmt3L,其中两个编码活性酶,一个产生无活性但必要的辅因子。然而,由于多个启动子的使用和可变剪接,实际上存在许多dnmt3异构体。最近在斑马鱼中鉴定出六个不同的dnmt3基因。
我们研究了斑马鱼中位于同一连锁群中紧密相邻的两个dnmt3基因,发现这两个基因彼此之间的相似性高于它们与其他斑马鱼dnmt3基因的相似性。我们发现了与这两个基因之一相关的几种不同剪接变体和可变剪接位点存在的证据,并研究了这些基因/变体在斑马鱼多个发育阶段和组织中的相对表达。
dnmt3-1和dnmt3-2基因的相似性表明它们是由于相对较新的基因复制事件产生的。可变剪接和起始位点的存在,类似于人类DNMT3s的情况,表明这些基因在脊椎动物物种中的控制/功能之间存在强烈的相似性。这些基因/变体的动态表达水平表明它们很可能在早期发育中发挥作用,对于dnmt3-2-1和dnmt3-1尤其如此。dnmt3-2-1是合子基因激活之前主要表达的形式,而dnmt3-1在合子基因激活后占主导地位,表明每个基因都有独特的发育作用。