Yale Stem Cell Center and Department of Cell Biology, Yale University School of Medicine, New Haven, Connecticut, USA.
Nat Genet. 2011 Feb;43(2):153-8. doi: 10.1038/ng.743. Epub 2010 Dec 26.
Canalization, also known as developmental robustness, describes an organism's ability to produce the same phenotype despite genotypic variations and environmental influences. In Drosophila, Hsp90, the trithorax-group proteins and transposon silencing have been previously implicated in canalization. Despite this, the molecular mechanism underlying canalization remains elusive. Here using a Drosophila eye-outgrowth assay sensitized by the dominant Kr(irregular facets-1)(Kr(If-1)) allele, we show that the Piwi-interacting RNA (piRNA) pathway, but not the short interfering RNA or micro RNA pathway, is involved in canalization. Furthermore, we isolated a protein complex composed of Hsp90, Piwi and Hop, the Hsp70/Hsp90 organizing protein homolog, and we demonstrated the function of this complex in canalization. Our data indicate that Hsp90 and Hop regulate the piRNA pathway through Piwi to mediate canalization. Moreover, they point to epigenetic silencing of the expression of existing genetic variants and the suppression of transposon-induced new genetic variation as two major mechanisms underlying piRNA pathway-mediated canalization.
canalization,也被称为发育稳健性,描述了一个生物体在基因型变异和环境影响下产生相同表型的能力。在果蝇中,Hsp90、trithorax 组蛋白和转座子沉默先前被认为与 canalization 有关。尽管如此,canalization 的分子机制仍然难以捉摸。在这里,我们使用显性 Kr(irregular facets-1)(Kr(If-1))等位基因敏感的果蝇眼外生 assay,表明 Piwi 相互作用 RNA (piRNA)途径,而不是短干扰 RNA 或 micro RNA 途径,参与 canalization。此外,我们分离出一个由 Hsp90、Piwi 和 Hop、Hsp70/Hsp90 组织蛋白同源物组成的蛋白质复合物,并证明了该复合物在 canalization 中的功能。我们的数据表明,Hsp90 和 Hop 通过 Piwi 调节 piRNA 途径来介导 canalization。此外,它们指出了现有遗传变异表达的表观遗传沉默和转座子诱导的新遗传变异的抑制是 piRNA 途径介导的 canalization 的两个主要机制。