Department of Cellular and Molecular Medicine, University of Arizona, Tucson, United States.
Department of Molecular and Cellular Biology, The University of Arizona, Tucson, United States.
Elife. 2022 Sep 12;11:e78837. doi: 10.7554/eLife.78837.
The establishment and maintenance of different cellular compartments in tissues is a universal requirement across all metazoans. Maintaining the correct ratio of cell types in time and space allows tissues to form patterned compartments and perform complex functions. Patterning is especially evident in the human colon, where tissue homeostasis is maintained by stem cells in crypt structures that balance proliferation and differentiation. Here, we developed a human 2D patient derived organoid screening platform to study tissue patterning and kinase pathway dynamics in single cells. Using this system, we discovered that waves of ERK signaling induced by apoptotic cells play a critical role in maintaining tissue patterning and homeostasis. If ERK is activated acutely across all cells instead of in wave-like patterns, then tissue patterning and stem cells are lost. Conversely, if ERK activity is inhibited, then stem cells become unrestricted and expand dramatically. This work demonstrates that the colonic epithelium requires coordinated ERK signaling dynamics to maintain patterning and tissue homeostasis. Our work reveals how ERK can antagonize stem cells while supporting cell replacement and the function of the gut.
在所有后生动物中,组织中不同细胞区室的建立和维持是普遍的要求。在时间和空间上保持正确的细胞类型比例可以使组织形成有图案的区室并执行复杂的功能。在人类结肠中,这种模式尤为明显,其中组织稳态由隐窝结构中的干细胞维持,这些干细胞平衡增殖和分化。在这里,我们开发了一种人类 2D 患者衍生类器官筛选平台,用于研究单细胞中的组织模式形成和激酶途径动力学。使用该系统,我们发现凋亡细胞诱导的 ERK 信号的波状模式对于维持组织模式形成和稳态至关重要。如果 ERK 在所有细胞中被急性激活而不是以波状模式激活,那么组织模式形成和干细胞就会丢失。相反,如果抑制 ERK 活性,那么干细胞就会不受限制并剧烈扩张。这项工作表明,结肠上皮需要协调的 ERK 信号动力学来维持模式形成和组织稳态。我们的工作揭示了 ERK 如何在支持肠道细胞替换和功能的同时拮抗干细胞。