Hwang Jung Shan, Kobayashi Chiyoko, Agata Kiyokazu, Ikeo Kazuho, Gojobori Takashi
Center for Information Biology and DNA Data Bank of Japan, National Institute of Genetics, Yata 1111, Mishima, Shizuoka 411-8540, Japan.
Gene. 2004 May 26;333:15-25. doi: 10.1016/j.gene.2004.02.034.
Apoptosis is a tightly organized cell death process that plays a crucial role in metazoan development, but it has not yet been revealed whether apoptotic events are involved in the process of regeneration. Here, we tried to detect apoptotic cells during planarian regeneration using the TdT-mediated dUTP nick-end labeling (TUNEL) assay as well as the expression of apoptosis-related genes. Three novel cDNAs were isolated from a planarian cDNA library and shown to be closely related to other metazoan caspases at the amino acid sequence level. One of these cDNAs, Caspase-like gene 3 (DjClg3), was expressed primarily in apoptotic cells by double detections with the TUNEL assay. Whole mount in situ studies indicated that DjClg3 was expressed in the cells of the mesenchymal space and also around the pharynx of the intact body. Its expression in the regenerating head piece was seen in the blastema and less significantly in the brain, while in the regenerating tail piece, DjClg3 expression was detected uniformly throughout the entire region. In parallel experiments, we performed in situ TUNEL assays to localize the regions where cell death occurred during regeneration and comparable results to the DjClg3 expression patterns were obtained. This is the first report to show that planarians have apoptosis-related genes and the results suggest that the apoptotic mechanism probably takes place to a large extent in normal intact worms as well as during their regeneration. We hypothesize that the presence of apoptosis in planarians may have a role in controlling cell numbers, eliminating unnecessary tissues or cells and remodeling the old tissues of regenerating body parts.
细胞凋亡是一个组织严密的细胞死亡过程,在后生动物发育中起关键作用,但凋亡事件是否参与再生过程尚未明确。在此,我们尝试利用TdT介导的dUTP缺口末端标记(TUNEL)检测法以及凋亡相关基因的表达来检测涡虫再生过程中的凋亡细胞。从涡虫cDNA文库中分离出三个新的cDNA,它们在氨基酸序列水平上与其他后生动物的半胱天冬酶密切相关。其中一个cDNA,即类半胱天冬酶基因3(DjClg3),通过与TUNEL检测法的双重检测,主要在凋亡细胞中表达。整体原位研究表明,DjClg3在间充质空间的细胞以及完整虫体咽部周围表达。其在再生头部的表达见于芽基,在脑中表达较弱,而在再生尾部,DjClg3在整个区域均有均匀表达。在平行实验中,我们进行了原位TUNEL检测以定位再生过程中发生细胞死亡的区域,并获得了与DjClg3表达模式类似的结果。这是首次报道表明涡虫具有凋亡相关基因,结果表明凋亡机制可能在正常完整的涡虫及其再生过程中大量发生。我们推测涡虫中凋亡的存在可能在控制细胞数量、消除不必要的组织或细胞以及重塑再生身体部位的旧组织方面发挥作用。