Azzouz Teldja N, Gruber Andreas, Schümperli Daniel
Institute of Cell Biology, University of Bern Baltzerstrasse 4, 3012 Bern, Switzerland.
Nucleic Acids Res. 2005 Apr 11;33(7):2106-17. doi: 10.1093/nar/gki516. Print 2005.
The 3' cleavage generating non-polyadenylated animal histone mRNAs depends on the base pairing between U7 snRNA and a conserved histone pre-mRNA downstream element. This interaction is enhanced by a 100 kDa zinc finger protein (ZFP100) that forms a bridge between an RNA hairpin element upstream of the processing site and the U7 small nuclear ribonucleoprotein (snRNP). The N-terminus of Lsm11, a U7-specific Sm-like protein, was shown to be crucial for histone RNA processing and to bind ZFP100. By further analysing these two functions of Lsm11, we find that Lsm11 and ZFP100 can undergo two interactions, i.e. between the Lsm11 N-terminus and the zinc finger repeats of ZFP100, and between the N-terminus of ZFP100 and the Sm domain of Lsm11, respectively. Both interactions are not specific for the two proteins in vitro, but the second interaction is sufficient for a specific recognition of the U7 snRNP by ZFP100 in cell extracts. Furthermore, clustered point mutations in three phylogenetically conserved regions of the Lsm11 N-terminus impair or abolish histone RNA processing. As these mutations have no effect on the two interactions with ZFP100, these protein regions must play other roles in histone RNA processing, e.g. by contacting the pre-mRNA or additional processing factors.
产生非聚腺苷酸化动物组蛋白mRNA的3'切割取决于U7 snRNA与保守的组蛋白前体mRNA下游元件之间的碱基配对。一种100 kDa的锌指蛋白(ZFP100)增强了这种相互作用,该蛋白在加工位点上游的RNA发夹元件与U7小核核糖核蛋白(snRNP)之间形成了一座桥梁。U7特异性Sm样蛋白Lsm11的N末端对于组蛋白RNA加工至关重要,并能结合ZFP100。通过进一步分析Lsm11的这两种功能,我们发现Lsm11和ZFP100可以发生两种相互作用,即分别在Lsm11的N末端与ZFP100的锌指重复序列之间,以及ZFP100的N末端与Lsm11的Sm结构域之间。这两种相互作用在体外对这两种蛋白质都不具有特异性,但第二种相互作用足以使ZFP100在细胞提取物中特异性识别U7 snRNP。此外,Lsm11 N末端三个系统发育保守区域中的成簇点突变会损害或消除组蛋白RNA加工。由于这些突变对与ZFP100的两种相互作用没有影响,这些蛋白质区域必定在组蛋白RNA加工中发挥其他作用,例如通过与前体mRNA或其他加工因子接触。