Ejercito Mylee, Wolfe Jason
Biology Department, Wesleyan University, Middletown, CT 06459, USA.
J Eukaryot Microbiol. 2003 Nov-Dec;50(6):427-9. doi: 10.1111/j.1550-7408.2003.tb00268.x.
During conjugation in the binucleate ciliate, Tetrahymena thermophila, the old macronucleus is eliminated as new macronuclei and micronuclei are ontogenetically derived from the zygote nucleus. The mechanism of programmed nuclear elimination in ciliates may be related to the mechanism of apoptosis in higher organisms since its chromatin undergoes major condensation, its DNA is digested into nucleosome-sized fragments, and it stains positively for TUNEL. The present study explores whether caspases are involved in programmed macronuclear degradation in Tetrahymena. We show here that caspase-like activity is detectable using two specific colorimetric substrates, and that the activity is reduced with specific caspase inhibitors. In addition, using the fluorigenic substrate PhiPhiLux, active caspase-like activity is detected in living cells, localized to cytoplasmic vesicles; activity is not detected in pre- or post-condensed macronuclei. Finally, three different inhibitors of caspase activity cause a block to macronuclear chromatin condensation and elimination. Therefore, a caspase-like enzyme activity is necessary for regulating macronuclear elimination in Tetrahymena. These data support the possibility that macronuclear elimination is related, evolutionarily, to regulated cell death in multicellular organisms.
在双核纤毛虫嗜热四膜虫进行接合生殖的过程中,旧的大核被消除,新的大核和小核在个体发育上源自合子核。纤毛虫中程序性核消除的机制可能与高等生物中的细胞凋亡机制有关,因为其染色质会发生主要的凝聚,其DNA被消化成核小体大小的片段,并且它对TUNEL呈阳性染色。本研究探讨了半胱天冬酶是否参与嗜热四膜虫中程序性大核降解。我们在此表明,使用两种特异性比色底物可检测到半胱天冬酶样活性,并且该活性会被特异性半胱天冬酶抑制剂降低。此外,使用荧光底物PhiPhiLux,在活细胞中检测到活性半胱天冬酶样活性,其定位于细胞质小泡;在凝聚前或凝聚后的大核中未检测到活性。最后,三种不同的半胱天冬酶活性抑制剂导致大核染色质凝聚和消除受阻。因此,一种半胱天冬酶样酶活性对于调节嗜热四膜虫中的大核消除是必要的。这些数据支持了大核消除在进化上与多细胞生物中受调控的细胞死亡相关的可能性。