TY - JOUR
T1 - CDK11 Promotes Cytokine-Induced Apoptosis in Pancreatic Beta Cells Independently of Glucose Concentration and Is Regulated by Inflammation in the NOD Mouse Model
AU - Sala, Ester
AU - Vived, Celia
AU - Luna, Júlia
AU - Saavedra-Ávila, Noemí Alejandra
AU - Sengupta, Upasana
AU - Castaño, A. Raúl
AU - Villar-Pazos, Sabrina
AU - Haba, Laura
AU - Verdaguer, Joan
AU - Ropero, Ana B.
AU - Stratmann, Thomas
AU - Pizarro, Javier
AU - Vázquez-Carrera, Manuel
AU - Nadal, Angel
AU - Lahti, Jill M.
AU - Mora, Conchi
N1 - Funding Information:
This work was supported by the Spanish Ministerio de Economía, Industria y Competitividad Grant SAF2017-82567-R, Ministerio de Ciencia y Tecnoloǵıa Grant SAF2008-02536, and, Ministerio de Ciencia, Innovación y Universidades Grant SAF2014-55077-R (to CM) and SAF2016-77227-R and SAF2013-45140-R (to TS and JV); the 2009 SGR-DGR grant from the Generalitat de Catalunya (to JV and CM) and the TR265 no. A001E-12132/2009 from the University of Lleida (to JV and CM); the Generalitat Valenciana PROMETEO/2011/080 grant; and the Ministerio de Economıá y Competitividad BFU2011-28358 grant (to AN). NS-A and CV were recipients of a predoctoral fellowship from the University of Lleida. US, ES, and JL have been granted with AGAUR predoctoral fellowships from the Generalitat de Catalunya. CM and JV are assistant professors of Immunology in the Serra Hunter Program at the University of Lleida and, investigators at the same institution and the Lleida Institute for Biomedical Research Fundación Pifarré.
Publisher Copyright:
© Copyright © 2021 Sala, Vived, Luna, Saavedra-Ávila, Sengupta, Castaño, Villar-Pazos, Haba, Verdaguer, Ropero, Stratmann, Pizarro, Vázquez-Carrera, Nadal, Lahti and Mora.
PY - 2021/2/10
Y1 - 2021/2/10
N2 - Background: Pancreatic islets are exposed to strong pro-apoptotic stimuli: inflammation and hyperglycemia, during the progression of the autoimmune diabetes (T1D). We found that the Cdk11(Cyclin Dependent Kinase 11) is downregulated by inflammation in the T1D prone NOD (non-obese diabetic) mouse model. The aim of this study is to determine the role of CDK11 in the pathogenesis of T1D and to assess the hierarchical relationship between CDK11 and Cyclin D3 in beta cell viability, since Cyclin D3, a natural ligand for CDK11, promotes beta cell viability and fitness in front of glucose. Methods: We studied T1D pathogenesis in NOD mice hemideficient for CDK11 (N-HTZ), and, in N-HTZ deficient for Cyclin D3 (K11HTZ-D3KO), in comparison to their respective controls (N-WT and K11WT-D3KO). Moreover, we exposed pancreatic islets to either pro-inflammatory cytokines in the presence of increasing glucose concentrations, or Thapsigargin, an Endoplasmic Reticulum (ER)-stress inducing agent, and assessed apoptotic events. The expression of key ER-stress markers (Chop, Atf4 and Bip) was also determined. Results: N-HTZ mice were significantly protected against T1D, and NS-HTZ pancreatic islets exhibited an impaired sensitivity to cytokine-induced apoptosis, regardless of glucose concentration. However, thapsigargin-induced apoptosis was not altered. Furthermore, CDK11 hemideficiency did not attenuate the exacerbation of T1D caused by Cyclin D3 deficiency. Conclusions: This study is the first to report that CDK11 is repressed in T1D as a protection mechanism against inflammation-induced apoptosis and suggests that CDK11 lies upstream Cyclin D3 signaling. We unveil the CDK11/Cyclin D3 tandem as a new potential intervention target in T1D.
AB - Background: Pancreatic islets are exposed to strong pro-apoptotic stimuli: inflammation and hyperglycemia, during the progression of the autoimmune diabetes (T1D). We found that the Cdk11(Cyclin Dependent Kinase 11) is downregulated by inflammation in the T1D prone NOD (non-obese diabetic) mouse model. The aim of this study is to determine the role of CDK11 in the pathogenesis of T1D and to assess the hierarchical relationship between CDK11 and Cyclin D3 in beta cell viability, since Cyclin D3, a natural ligand for CDK11, promotes beta cell viability and fitness in front of glucose. Methods: We studied T1D pathogenesis in NOD mice hemideficient for CDK11 (N-HTZ), and, in N-HTZ deficient for Cyclin D3 (K11HTZ-D3KO), in comparison to their respective controls (N-WT and K11WT-D3KO). Moreover, we exposed pancreatic islets to either pro-inflammatory cytokines in the presence of increasing glucose concentrations, or Thapsigargin, an Endoplasmic Reticulum (ER)-stress inducing agent, and assessed apoptotic events. The expression of key ER-stress markers (Chop, Atf4 and Bip) was also determined. Results: N-HTZ mice were significantly protected against T1D, and NS-HTZ pancreatic islets exhibited an impaired sensitivity to cytokine-induced apoptosis, regardless of glucose concentration. However, thapsigargin-induced apoptosis was not altered. Furthermore, CDK11 hemideficiency did not attenuate the exacerbation of T1D caused by Cyclin D3 deficiency. Conclusions: This study is the first to report that CDK11 is repressed in T1D as a protection mechanism against inflammation-induced apoptosis and suggests that CDK11 lies upstream Cyclin D3 signaling. We unveil the CDK11/Cyclin D3 tandem as a new potential intervention target in T1D.
KW - CDK11
KW - apoptosis
KW - beta cell
KW - cyclin D3
KW - glucose
KW - inflammation
KW - insulin
KW - type 1 diabetes
UR - http://www.scopus.com/inward/record.url?scp=85101982775&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=85101982775&partnerID=8YFLogxK
U2 - 10.3389/fimmu.2021.634797
DO - 10.3389/fimmu.2021.634797
M3 - Article
C2 - 33664748
AN - SCOPUS:85101982775
SN - 1664-3224
VL - 12
JO - Frontiers in immunology
JF - Frontiers in immunology
M1 - 634797
ER -