Pan Kally Z, Palter Julia E, Rogers Aric N, Olsen Anders, Chen Di, Lithgow Gordon J, Kapahi Pankaj
Buck Institute for Age Research, 8001 Redwood Blvd., Novato, CA 94945, USA.
Aging Cell. 2007 Feb;6(1):111-9. doi: 10.1111/j.1474-9726.2006.00266.x.
Protein synthesis is a regulated cellular process that links nutrients in the environment to organismal growth and development. Here we examine the role of genes that regulate mRNA translation in determining growth, reproduction, stress resistance and lifespan. Translational control of protein synthesis by regulators such as the cap-binding complex and S6 kinase play an important role during growth. We observe that inhibition of various genes in the translation initiation complex including ifg-1, the worm homologue of eIF4G, which is a scaffold protein in the cap-binding complex; and rsks-1, the worm homologue of S6 kinase, results in lifespan extension in Caenorhabditis elegans. Inhibition of ifg-1 or rsks-1 also slows development, reduces fecundity and increases resistance to starvation. A reduction in ifg-1 expression in dauers was also observed, suggesting an inhibition of protein translation during the dauer state. Thus, mRNA translation exerts pleiotropic effects on growth, reproduction, stress resistance and lifespan in C. elegans.
蛋白质合成是一个受调控的细胞过程,它将环境中的营养物质与生物体的生长和发育联系起来。在这里,我们研究了调控mRNA翻译的基因在决定生长、繁殖、抗逆性和寿命方面的作用。诸如帽结合复合体和S6激酶等调节因子对蛋白质合成的翻译控制在生长过程中起着重要作用。我们观察到,抑制翻译起始复合物中的各种基因,包括ifg-1(eIF4G的线虫同源物,eIF4G是帽结合复合体中的一种支架蛋白)和rsks-1(S6激酶的线虫同源物),会导致秀丽隐杆线虫寿命延长。抑制ifg-1或rsks-1也会减缓发育、降低繁殖力并增加对饥饿的抵抗力。在滞育幼虫中也观察到ifg-1表达的降低,这表明在滞育状态下蛋白质翻译受到抑制。因此,mRNA翻译对秀丽隐杆线虫的生长、繁殖、抗逆性和寿命具有多效性影响。