Cytogenetics Laboratory, Department of Zoology, Institute of Science, Banaras Hindu University, Varanasi, 221005, India.
Cytogenetics Laboratory, Department of Zoology, Institute of Science, Banaras Hindu University, Varanasi, 221005, India.
Exp Cell Res. 2024 Jun 1;439(1):114092. doi: 10.1016/j.yexcr.2024.114092. Epub 2024 May 14.
Asymmetric stem cell divisions play instrumental roles in the maintenance, growth and differentiation of organs. Failure of asymmetric stem cell divisions may result in an array of developmental disorders, including cancer. It is well established that the gene, inscuteable, acts as the upstream component of asymmetric cell divisions. In Drosophila larval midgut, a founder adult midgut precursor (AMP) experiences an asymmetric division to instruct its first daughter to become a peripheral cell that serves as a niche where the AMP and its future daughters can remain undifferentiated. The present study demonstrates that inscuteable expressing stem cells require Rab11, a conserved small Ras-like GTPase, for proper proliferation and differentiation. As insc-GAL4 mediated Rab11RNAi in Drosophila larval and adult midguts show the disruption of the niche microenvironment of adult midgut precursors as well as elevated DPP signalling at the larval stage, which is associated with aberrant over-proliferation and early differentiation of larval AMPs and adult intestinal stem cells. The observed connections between Rab11, larval AMP proliferation, niche establishment, and DPP signalling highlight the potential for Rab11 to serve as a key regulatory factor in maintaining tissue homeostasis and balanced cellular growth.
不对称的干细胞分裂在器官的维持、生长和分化中起着重要作用。不对称干细胞分裂的失败可能导致一系列发育障碍,包括癌症。众所周知,基因 inscuteable 作为不对称细胞分裂的上游组成部分。在果蝇幼虫肠道中,一个成体肠道前体细胞(AMP)经历不对称分裂,指导其第一个女儿成为一个外围细胞,作为 AMP 及其未来女儿保持未分化的小生境。本研究表明,表达 inscuteable 的干细胞需要 Rab11,一种保守的小 Ras 样 GTPase,以进行适当的增殖和分化。由于 insc-GAL4 介导的 Rab11RNAi 在果蝇幼虫和成虫肠道中显示出破坏成体肠道前体细胞的小生境微环境以及幼虫阶段 DPP 信号的升高,这与幼虫 AMP 和成虫肠干细胞的异常过度增殖和早期分化有关。观察到的 Rab11 与 larval AMP 增殖、小生境建立和 DPP 信号之间的联系突出了 Rab11 作为维持组织内稳态和平衡细胞生长的关键调节因子的潜力。