Andersen Erik C, Lu Xiaowei, Horvitz H Robert
Howard Hughes Medical Institute, Department of Biology, Room 68-425, MIT, 77 Massachusetts Avenue, Cambridge, MA 02139, USA.
Development. 2006 Jul;133(14):2695-704. doi: 10.1242/dev.02444. Epub 2006 Jun 14.
The class A, B and C synthetic multivulva (synMuv) genes act redundantly to negatively regulate the expression of vulval cell fates in Caenorhabditis elegans. The class B and C synMuv proteins include homologs of proteins that modulate chromatin and influence transcription in other organisms similar to members of the Myb-MuvB/dREAM, NuRD and Tip60/NuA4 complexes. To determine how these chromatin-remodeling activities negatively regulate the vulval cell-fate decision, we isolated a suppressor of the synMuv phenotype and found that the suppressor gene encodes the C. elegans homolog of Drosophila melanogaster ISWI. The C. elegans ISW-1 protein likely acts as part of a Nucleosome Remodeling Factor (NURF) complex with NURF-1, a nematode ortholog of NURF301, to promote the synMuv phenotype. isw-1 and nurf-1 mutations suppress both the synMuv phenotype and the multivulva phenotype caused by overactivation of the Ras pathway. Our data suggest that a NURF-like complex promotes the expression of vulval cell fates by antagonizing the transcriptional and chromatin-remodeling activities of complexes similar to Myb-MuvB/dREAM, NuRD and Tip60/NuA4. Because the phenotypes caused by a null mutation in the tumor-suppressor and class B synMuv gene lin-35 Rb and a gain-of-function mutation in let-60 Ras are suppressed by reduction of isw-1 function, NURF complex proteins might be effective targets for cancer therapy.
A、B和C类合成多外阴(synMuv)基因以冗余方式发挥作用,对秀丽隐杆线虫外阴细胞命运的表达进行负调控。B类和C类synMuv蛋白包括在其他生物体中调节染色质并影响转录的蛋白质的同源物,类似于Myb-MuvB/dREAM、NuRD和Tip60/NuA4复合物的成员。为了确定这些染色质重塑活性如何负调控外阴细胞命运决定,我们分离出了一种synMuv表型的抑制子,发现该抑制子基因编码果蝇ISWI的秀丽隐杆线虫同源物。秀丽隐杆线虫ISW-1蛋白可能与NURF-1(NURF301的线虫直系同源物)一起作为核小体重塑因子(NURF)复合物的一部分发挥作用,以促进synMuv表型。isw-1和nurf-1突变可抑制synMuv表型以及由Ras途径过度激活引起的多外阴表型。我们的数据表明,一种类似NURF的复合物通过拮抗类似于Myb-MuvB/dREAM、NuRD和Tip60/NuA4的复合物的转录和染色质重塑活性来促进外阴细胞命运的表达。由于肿瘤抑制因子和B类synMuv基因lin-35 Rb的无效突变以及let-60 Ras的功能获得性突变所导致的表型可通过降低isw-1功能而被抑制,NURF复合物蛋白可能是癌症治疗的有效靶点。