Guo Tingxia, Peters Antoine H F M, Newmark Phillip A
Department of Cell and Developmental Biology, University of Illinois at Urbana-Champaign, B107 Chemical and Life Science Laboratory, 601 South Goodwin Avenue, Urbana, Illinois 61801,USA.
Dev Cell. 2006 Aug;11(2):159-69. doi: 10.1016/j.devcel.2006.06.004.
The regenerative abilities of freshwater planarians are based on neoblasts, stem cells maintained throughout the animal's life. We show that a member of the Bruno-like family of RNA binding proteins is critical for regulating neoblasts in the planarian Schmidtea mediterranea. Smed-bruno-like (bruli) mRNA and protein are expressed in neoblasts and the central nervous system. Following bruli RNAi, which eliminates detectable Bruli protein, planarians initiate the proliferative response to amputation and form small blastemas but then undergo tissue regression and lysis. We characterize the neoblast population by using antibodies recognizing SMEDWI-1 and Histone H4 (monomethyl-K20) and cell-cycle markers to label subsets of neoblasts and their progeny. bruli knockdown results in a dramatic reduction/elimination of neoblasts. Our analyses indicate that neoblasts lacking Bruli can respond to wound stimuli and generate progeny that can form blastemas and differentiate; yet, they are unable to self-renew. These results suggest that Bruli is required for stem cell maintenance.
淡水涡虫的再生能力基于新细胞,即动物一生中持续存在的干细胞。我们发现,RNA结合蛋白布鲁诺样家族的一个成员对于调控地中海涡虫中的新细胞至关重要。地中海涡虫布鲁诺样蛋白(Bruli)的mRNA和蛋白在新细胞及中枢神经系统中表达。在Bruli RNA干扰后(可消除可检测到的Bruli蛋白),涡虫启动对截肢的增殖反应并形成小的芽基,但随后会经历组织退化和溶解。我们通过使用识别SMEDWI-1和组蛋白H4(单甲基化-K20)的抗体以及细胞周期标记物来标记新细胞及其后代的亚群,从而对新细胞群体进行表征。Bruli基因敲低导致新细胞显著减少/消失。我们的分析表明,缺乏Bruli的新细胞能够对伤口刺激做出反应并产生可形成芽基并分化的后代;然而,它们无法自我更新。这些结果表明,Bruli是干细胞维持所必需的。