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Wnt signaling suppresses MAPK-driven proliferation of intestinal stem cells

机译:Wnt 信号转导抑制 MAPK 驱动的肠道干细胞增殖

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摘要

Intestinal homeostasis depends on a slowly proliferating stem cell compartment in crypt cells, followed by rapid proliferation of committed progenitor cells in the transit amplifying (TA) compartment. The balance between proliferation and differentiation in intestinal stem cells (ISCs) is regulated by Wnt/beta-catenin signaling, although the mechanism remains unclear. We previously targeted PORCN, an enzyme essential for all Wnt secretion, and demonstrated that stromal production of Wnts was required for intestinal homeostasis. Here, a PORCN inhibitor was used to acutely suppress Wnt signaling. Unexpectedly, the treatment induced an initial burst of proliferation in the stem cell compartment of the small intestine, due to conversion of ISCs into TA cells with a loss of intrinsic ISC self-renewal. This process involved MAPK pathway activation, as the proliferating cells in the base of the intestinal crypt contained phosphorylated ERK1/2, and a MEK inhibitor attenuated the proliferation of ISCs and their differentiation into TA cells. These findings suggest a role for Wnt signaling in suppressing the MAPK pathway at the crypt base to maintain a pool of ISCs. The interaction between Wnt and MAPK pathways in vivo has potential therapeutic applications in cancer and regenerative medicine.
机译:肠道稳态取决于隐窝细胞中缓慢增殖的干细胞区室,随后是转运扩增 (TA) 区室中承诺祖细胞的快速增殖。肠道干细胞 (ISC) 增殖和分化之间的平衡受 Wnt/β-catenin 信号转导的调节,但其机制尚不清楚。我们之前靶向了 PORCN,一种对所有 Wnt 分泌至关重要的酶,并证明 Wnts 的基质产生是肠道稳态所必需的。在这里,PORCN抑制剂用于急性抑制Wnt信号转导。出乎意料的是,由于 ISC 转化为 TA 细胞,并且失去了内在的 ISC 自我更新,该治疗诱导了小肠干细胞室的初始增殖爆发。该过程涉及 MAPK 通路激活,因为肠隐窝底部的增殖细胞含有磷酸化的 ERK1/2,并且 MEK 抑制剂减弱了 ISC 的增殖及其分化为 TA 细胞。这些发现表明 Wnt 信号转导在抑制隐窝底部的 MAPK 通路以维持 ISC 池方面发挥作用。Wnt和MAPK通路在体内的相互作用在癌症和再生医学中具有潜在的治疗应用。

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