CFTR represses a PDX1 axis to govern pancreatic ductal cell fate

被引:0
|
作者
Rotti, Pavana G. [1 ]
Yi, Yaling [2 ]
Gasser, Grace [2 ]
Yuan, Feng [2 ]
Sun, Xingshen [2 ]
Apak-Evans, Idil [2 ]
Wu, Peipei [2 ]
Liu, Guangming [2 ]
Choi, Soon [2 ]
Reeves, Rosie [2 ]
Scioneaux, Attilina E. [2 ]
Zhang, Yulong [2 ]
Winter, Michael [2 ]
Liang, Bo [2 ]
Cunicelli, Nathan [2 ]
Uc, Aliye [4 ]
Norris, Andrew W. [3 ]
Sussel, Lori [5 ]
L., Kristen [5 ]
Engelhardt, John F. [2 ]
机构
[1] MIT, Whitehead Inst, Cambridge, MA USA
[2] Univ Iowa, Carver Coll Med, Dept Anat & Cell Biol, Iowa City, IA 52242 USA
[3] Univ Iowa, Carver Coll Med, Ctr Gene Therapy, Iowa City, IA USA
[4] Carver Coll Med, Stead Family Dept Pediat, Iowa City, IA USA
[5] Univ Colorado Anschutz Med Campus, Barbara Davis Ctr Childhood Diabet, Aurora, CO 80045 USA
关键词
TRANSMEMBRANE CONDUCTANCE REGULATOR; TO-MESENCHYMAL TRANSITION; GLUCOSE-TOLERANCE; BETA; MOUSE; LINEAGE; PTEN; SOX9; GENE; PHENOTYPE;
D O I
10.1016/j.isci.2024.111393
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Inflammation, acinar atrophy, and ductal hyperplasia drive pancreatic remodeling in newborn cystic fibrosis (CF) ferrets lacking a functional cystic fibrosis conductance regulator (CFTR) channel. These changes are associated with a transient phase of glucose intolerance that involves islet destruction and subsequent regeneration near hyperplastic ducts. The phenotypic changes in CF ductal epithelium and their impact on islet function are unknown. Using bulk RNA sequencing (RNA-seq), single-cell RNA sequencing (scRNAseq), and assay for transposase-accessible chromatin using sequencing (ATAC-seq) on CF ferret models, we demonstrate that ductal CFTR protein constrains PDX1 expression by maintaining PTEN and GSK3R activation. In the absence of CFTR protein, centroacinar cells adopted a bipotent progenitor-like state associated with enhanced WNT/R-Catenin, transforming growth factor R (TGF-R), and AKT signaling. We show that the level of CFTR protein, not its channel function, regulates PDX1 expression. Thus, this study has discovered a cell-autonomous CFTR-dependent mechanism by which CFTR mutations that produced little to no protein could impact pancreatic exocrine/endocrine remodeling in people with CF.
引用
收藏
页数:26
相关论文
共 50 条
  • [41] BNip3L Mediates Mitochondrial Pancreatic Beta Cell Death in Pdx1 Insufficient States
    Fujimoto, Kei
    Ford, Eric L.
    Tran, Hung
    Wice, Burton M.
    Crosby, Seth D.
    Dorn, Gerald W., II
    Polonsky, Kenneth S.
    DIABETES, 2010, 59 : A48 - A49
  • [42] Pdx1 protein induces human embryonic stem cells into the pancreatic endocrine lineage
    Liang, Qing Le
    Mo, Zhengying
    Li, Xue Feng
    Wang, Xiao Xun
    Li, Rui Ming
    CELL BIOLOGY INTERNATIONAL, 2013, 37 (01) : 2 - 10
  • [43] Genome-wide analysis of PDX1 target genes in human pancreatic progenitors
    Wang, Xianming
    Sterr, Michael
    Burtscher, Ingo
    Chen, Shen
    Hieronimus, Anja
    Machicao, Fausto
    Staiger, Harald
    Haering, Hans-Ulrich
    Lederer, Gabriele
    Meitinger, Thomas
    Cemilogar, Filippo M.
    Schotta, Gunnar
    Innler, Martin
    Beckers, Johannes
    de Angelis, Martin Hrabe
    Ray, Michael
    Wright, Christopher V. E.
    Bakhti, Mostafa
    Lickert, Heiko
    MOLECULAR METABOLISM, 2018, 9 : 57 - 68
  • [44] Preserving expression of Pdx1 improves β-cell failure in diabetic mice
    Yamamoto, Yuichi
    Miyatsuka, Takeshi
    Sasaki, Shugo
    Miyashita, Kazuyuki
    Kubo, Fumiyo
    Shimo, Naoki
    Takebe, Satomi
    Watada, Hirotaka
    Kaneto, Hideaki
    Matsuoka, Taka-aki
    Shimomura, Iichiro
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2017, 483 (01) : 418 - 424
  • [45] Foxa2 controls Pdx1 gene expression in pancreatic β-cells in vivo
    Lee, CS
    Sund, NJ
    Vatamaniuk, MZ
    Matschinsky, FM
    Stoffers, DA
    Kaestner, KH
    DIABETES, 2002, 51 (08) : 2546 - 2551
  • [46] ATF3 represses PDX-1 expression in pancreatic β-cells
    Jang, Min Kyung
    Park, Hyun Jin
    Jung, Myeong Ho
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2011, 412 (02) : 385 - 390
  • [47] Pancreatic duodenal homeobox-1 (PDX1) functions as a tumor suppressor in gastric cancer
    Ma, Juan
    Chen, Minhu
    Wang, Jide
    Xia, Harry H. X.
    Zhu, Senlin
    Liang, Yingjie
    Gu, Qing
    Qiao, Liang
    Dai, Yun
    Zou, Bing
    Li, Zesong
    Zhang, Yusheng
    Lan, Huiyao
    Wong, Benjamin C. Y.
    CARCINOGENESIS, 2008, 29 (07) : 1327 - 1333
  • [48] Pancreatic-duodenal homeobox 1 (PDX1) functions as a tumor suppressor in gastric cancer
    Ma, Juan
    Chen, Min Hu
    Liang, Yingjie
    Gu, Qing
    Wang, Jide
    Qiao, Liang
    Dai, Yun
    Zou, Bing
    Lan, HuiYao
    Wong, Benjamin C. Y.
    GASTROENTEROLOGY, 2008, 134 (04) : A382 - A382
  • [49] Foxa2 and Pdx1 cooperatively regulate postnatal maturation of pancreatic β-cells
    Bastidas-Ponce, Aimee
    Roscioni, Sara S.
    Burtscher, Ingo
    Bader, Erik
    Sterr, Michael
    Bakhti, Mostafa
    Lickert, Heiko
    MOLECULAR METABOLISM, 2017, 6 (06): : 524 - 534
  • [50] Unlocking β-cell restoration: The crucial role of PDX1 in diabetes therapy
    Siwan, Deepali
    Nandave, Mukesh
    Gilhotra, Ritu
    Almalki, Waleed Hassan
    Gupta, Gaurav
    Gautam, Rupesh K.
    PATHOLOGY RESEARCH AND PRACTICE, 2024, 254