Curriculum in Genetics and Molecular Biology, University of North Carolina, Chapel Hill, North Carolina, United States of America.
PLoS One. 2009 Dec 4;4(12):e8168. doi: 10.1371/journal.pone.0008168.
Metazoan replication-dependent histone mRNAs terminate in a conserved stem-loop structure rather than a polyA tail. Formation of this unique mRNA 3' end requires Stem-loop Binding Protein (SLBP), which directly binds histone pre-mRNA and stimulates 3' end processing. The 3' end stem-loop is necessary for all aspects of histone mRNA metabolism, including replication coupling, but its importance to organism fitness and genome maintenance in vivo have not been characterized.
METHODOLOGY/PRINCIPAL FINDINGS: In Drosophila, disruption of the Slbp gene prevents normal histone pre-mRNA processing and causes histone pre-mRNAs to utilize the canonical 3' end processing pathway, resulting in polyadenylated histone mRNAs that are no longer properly regulated. Here we show that Slbp mutants display genomic instability, including loss of heterozygosity (LOH), increased presence of chromosome breaks, tetraploidy, and changes in position effect variegation (PEV). During imaginal disc growth, Slbp mutant cells show defects in S phase and proliferate more slowly than control cells.
CONCLUSIONS/SIGNIFICANCE: These data are consistent with a model in which changing the 3' end of histone mRNA disrupts normal replication-coupled histone mRNA biosynthesis and alters chromatin assembly, resulting in genomic instability, inhibition of cell proliferation, and impaired development.
后生动物依赖复制的组蛋白 mRNA 在保守的茎环结构而不是 polyA 尾巴处终止。这种独特的 mRNA 3' 端的形成需要 Stem-loop Binding Protein(SLBP),它直接结合组蛋白前体 mRNA 并刺激 3' 端加工。3' 端茎环对于组蛋白 mRNA 代谢的各个方面都是必需的,包括复制偶联,但它对体内生物体适应性和基因组维持的重要性尚未得到表征。
方法/主要发现:在果蝇中,Slbp 基因的破坏阻止了正常的组蛋白前体 mRNA 加工,并导致组蛋白前体 mRNA 利用规范的 3' 端加工途径,导致不再被正确调控的 polyadenylated 组蛋白 mRNA。在这里,我们表明 Slbp 突变体显示出基因组不稳定性,包括杂合性丢失 (LOH)、染色体断裂增加、四倍体和位置效应斑变 (PEV) 的变化。在 imaginal 盘生长过程中,Slbp 突变体细胞在 S 期显示出缺陷并且比对照细胞增殖更慢。
结论/意义:这些数据与以下模型一致,即改变组蛋白 mRNA 的 3' 端会破坏正常的复制偶联组蛋白 mRNA 生物合成并改变染色质组装,导致基因组不稳定性、细胞增殖抑制和发育受损。