Graduate School of Pharmaceutical Sciences, The University of Tokyo, 7-3-1 Hongo, Bunkyo-Ku, Tokyo, 113-0033, Japan.
Institute of Science and Technology Austria, Am Campus 1, 3400, Klosterneuburg, Austria.
BMC Biol. 2024 Aug 2;22(1):157. doi: 10.1186/s12915-024-01956-4.
The remarkable regenerative abilities observed in planarians and cnidarians are closely linked to the active proliferation of adult stem cells and the precise differentiation of their progeny, both of which typically deteriorate during aging in low regenerative animals. While regeneration-specific genes conserved in highly regenerative organisms may confer regenerative abilities and long-term maintenance of tissue homeostasis, it remains unclear whether introducing these regenerative genes into low regenerative animals can improve their regeneration and aging processes.
Here, we ectopically express highly regenerative species-specific JmjC domain-encoding genes (HRJDs) in Drosophila, a widely used low regenerative model organism. Surprisingly, HRJD expression impedes tissue regeneration in the developing wing disc but extends organismal lifespan when expressed in the intestinal stem cell lineages of the adult midgut under non-regenerative conditions. Notably, HRJDs enhance the proliferative activity of intestinal stem cells while maintaining their differentiation fidelity, ameliorating age-related decline in gut barrier functions.
These findings together suggest that the introduction of highly regenerative species-specific genes can improve stem cell functions and promote a healthy lifespan when expressed in aging animals.
在水螅和扁形动物中观察到的显著再生能力与成年干细胞的活跃增殖和其后代的精确分化密切相关,而在低再生能力的动物中,这两者通常会随着衰老而恶化。虽然在高度再生的生物中保守的再生特异性基因可能赋予再生能力和组织内稳态的长期维持,但尚不清楚将这些再生基因引入低再生动物是否能改善它们的再生和衰老过程。
在这里,我们在果蝇中异位表达高度再生的物种特异性 JmjC 结构域编码基因(HRJDs),果蝇是一种广泛使用的低再生模型生物。令人惊讶的是,HRJD 的表达会阻碍发育中的翅膀盘组织的再生,但在非再生条件下在成年中肠的肠干细胞谱系中表达时会延长生物体的寿命。值得注意的是,HRJDs 增强了肠干细胞的增殖活性,同时保持了它们的分化保真度,改善了与年龄相关的肠道屏障功能下降。
这些发现共同表明,在衰老动物中表达高度再生的物种特异性基因可以改善干细胞功能并促进健康的寿命。