Reinholdt Laura G, Schimenti John C
The Jackson Laboratory, Bar Harbor, ME 04609, USA.
Chromosoma. 2005 Jul;114(2):127-34. doi: 10.1007/s00412-005-0346-4. Epub 2005 Jun 1.
The Mei1(m1Jcs) allele contains a point mutation in a novel gene required for normal meiosis in male and female mice. We previously hypothesized that Mei1 is likely required for the formation of genetically programmed double-strand breaks (DSBs), the initiating event of meiotic recombination because in mutant spermatocytes (1) RAD51 foci are greatly reduced at zygonema; (2) RAD51 foci can be restored by cisplatin-induced DNA damage; and (3) phosphorylated H2AX is greatly reduced at leptonema. If this hypothesis is correct, Mei1 would act upstream of genes required for repair of DSBs by homologous recombination. To test this, we examined meiosis in Mei(m1Jcs)/Mei1(m1Jcs) (Mei1(-/-)) and Dmc1(tm1Jcs)/Dmc1(tm1Jcs) (Dmc1(-/-)) mice and mice homozygous at both loci (Dmc1(-/-) Mei1(-/-)), exploiting the fact that oogenesis is much more severely affected by the absence of DMC1 than by the absence of MEI1. The phenotypes of both male and female double mutants were identical to that of Mei1(-/-) animals. Therefore, Mei1 can be positioned upstream of Dmc1 in the genetic pathway that operates during mammalian meiosis. Furthermore, this epistatic interaction provides additional evidence in support of the hypothesis that Mei1 is required for the initiating events of meiotic recombination.
Mei1(m1Jcs)等位基因在雄性和雌性小鼠正常减数分裂所需的一个新基因中存在一个点突变。我们之前推测,Mei1可能是基因程序性双链断裂(DSB)形成所必需的,而DSB是减数分裂重组的起始事件,因为在突变的精母细胞中:(1)偶线期RAD51焦点大幅减少;(2)顺铂诱导的DNA损伤可恢复RAD51焦点;(3)细线期磷酸化的H2AX大幅减少。如果这个假设正确,Mei1将在通过同源重组修复DSB所需的基因上游起作用。为了验证这一点,我们利用卵母细胞生成受DMC1缺失的影响比受MEI1缺失的影响严重得多这一事实,研究了Mei(m1Jcs)/Mei1(m1Jcs)(Mei1(-/-))、Dmc1(tm1Jcs)/Dmc1(tm1Jcs)(Dmc1(-/-))小鼠以及两个位点均为纯合子的小鼠(Dmc1(-/-)Mei1(-/-))的减数分裂。雄性和雌性双突变体的表型与Mei1(-/-)动物相同。因此,在哺乳动物减数分裂过程中起作用的遗传途径中,Mei1可定位在Dmc1的上游。此外,这种上位性相互作用为支持Mei1是减数分裂重组起始事件所必需的这一假设提供了额外证据。