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The proprotein convertase furin regulates the development of thymic epithelial cells to ensure central immune tolerance.


ABSTRACT: The generation of mature T cells and establishment of central tolerance is predominantly orchestrated by thymic epithelial cells (TECs). Proprotein convertases are responsible for the proteolysis of proproteins into their mature bioactive counterparts. Here, we found that Furin, a member of the subtilisin/kexin-like PCs family, is highly expressed in TECs compared with other members of this family. TEC-specific deletion of Furin caused severe thymic atrophy and predominantly reduced the number of medullary TECs and thymic tuft cells, and to a less degree, cortical TECs. Furin deletion attenuated the proliferation of TECs, impaired thymopoiesis, and led to autoimmune disorders in mice. Furin promotes the development of TECs via cleavage of proIGF1 receptor and pro-Insulin receptor and the activation of downstream ERK/MAPK and Akt signaling pathways. Thus, this study uncovered the role of furin in TEC development and function and highlighted the importance of post-translational modification of immature proproteins in TEC biology.

SUBMITTER: Liang Z 

PROVIDER: S-EPMC9579486 | biostudies-literature | 2022 Oct

REPOSITORIES: biostudies-literature

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The proprotein convertase furin regulates the development of thymic epithelial cells to ensure central immune tolerance.

Liang Zhanfeng Z   Zhang Zhaoqi Z   Zhang Qian Q   Dong Xue X   Yang Xiaofeng X   Zhang Jiayu J   Lei Tong T   Creemers John W M JWM   Zhang Baojun B   Zhao Yong Y  

iScience 20220928 10


The generation of mature T cells and establishment of central tolerance is predominantly orchestrated by thymic epithelial cells (TECs). Proprotein convertases are responsible for the proteolysis of proproteins into their mature bioactive counterparts. Here, we found that <i>Furin</i>, a member of the subtilisin/kexin-like PCs family, is highly expressed in TECs compared with other members of this family. TEC-specific deletion of <i>Furin</i> caused severe thymic atrophy and predominantly reduce  ...[more]

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