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Hippo 通路介导的 YAP1/TAZ 抑制对于胰腺内分泌细胞的正确特化和分化是必需的。

Hippo pathway-mediated YAP1/TAZ inhibition is essential for proper pancreatic endocrine specification and differentiation.

机构信息

Department of Cell Systems & Anatomy, University of Texas Health Science Center at San Antonio, San Antonio, United States.

Department of Obstetrics, The Second Xiangya Hospital, Central South University, Changsha, China.

出版信息

Elife. 2024 Jul 25;13:e84532. doi: 10.7554/eLife.84532.

Abstract

The Hippo pathway plays a central role in tissue development and homeostasis. However, the function of Hippo in pancreatic endocrine development remains obscure. Here, we generated novel conditional genetically engineered mouse models to examine the roles of Hippo pathway-mediated YAP1/TAZ inhibition in the development stages of endocrine specification and differentiation. While YAP1 protein was localized to the nuclei in bipotent progenitor cells, Neurogenin 3 expressing endocrine progenitors completely lost YAP1 expression. Using genetically engineered mouse models, we found that inactivation of YAP1 requires both an intact Hippo pathway and Neurogenin 3 protein. Gene deletion of Lats1 and 2 kinases () in endocrine progenitor cells of developing mouse pancreas using blocked endocrine progenitor cell differentiation and specification, resulting in reduced islets size and a disorganized pancreas at birth. Loss of in Neurogenin 3 expressing cells activated YAP1/TAZ transcriptional activity and recruited macrophages to the developing pancreas. These defects were rescued by deletion of genes, suggesting that tight regulation of YAP1/TAZ by Hippo signaling is crucial for pancreatic endocrine specification. In contrast, deletion of using β-cell-specific Ins1 resulted in a phenotypically normal pancreas, indicating that are indispensable for differentiation of endocrine progenitors but not for that of β-cells. Our results demonstrate that loss of YAP1/TAZ expression in the pancreatic endocrine compartment is not a passive consequence of endocrine specification. Rather, Hippo pathway-mediated inhibition of YAP1/TAZ in endocrine progenitors is a prerequisite for endocrine specification and differentiation.

摘要

Hippo 通路在组织发育和稳态中发挥核心作用。然而,Hippo 在胰腺内分泌发育中的功能仍不清楚。在这里,我们生成了新的条件性基因工程小鼠模型,以研究 Hippo 通路介导的 YAP1/TAZ 抑制在内分泌特化和分化的发育阶段中的作用。虽然 YAP1 蛋白在双潜能祖细胞中定位于细胞核,但表达 Neurogenin 3 的内分泌祖细胞完全失去了 YAP1 的表达。使用基因工程小鼠模型,我们发现 YAP1 的失活需要完整的 Hippo 通路和 Neurogenin 3 蛋白。使用 使发育中小鼠胰腺中的内分泌祖细胞中的 Lats1 和 2 激酶失活(),阻断了内分泌祖细胞的分化和特化,导致胰岛体积减小,出生时胰腺组织紊乱。Neurogenin 3 表达细胞中 的缺失激活了 YAP1/TAZ 的转录活性,并招募巨噬细胞到发育中的胰腺。通过删除 基因可以挽救这些缺陷,表明 Hippo 信号对 YAP1/TAZ 的紧密调控对于胰腺内分泌特化至关重要。相比之下,使用β细胞特异性 Ins1 删除 导致表型正常的胰腺,表明 对于内分泌祖细胞的分化是必不可少的,但对于β细胞的分化则不是。我们的结果表明,在胰腺内分泌区中 YAP1/TAZ 的表达缺失不是内分泌特化的被动后果。相反,Hippo 通路介导的内分泌祖细胞中 YAP1/TAZ 的抑制是内分泌特化和分化的前提条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e0a8/11272159/edefa0450527/elife-84532-fig1.jpg

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