|
|
Lingwen Zhong, Senta Georgia, Shuen-ing Tschen, Keiko Nakayama, Keiichi Nakayama, Anil Bhushan
J Clin Invest. 2007;
117(10):2869
doi:10.1172/JCI32198
Abstract |
Full text
| PDF

D
iabetes results from an inadequate mass of functional β cells, due to either β cell loss caused by immune assault or the lack of compensation to overcome insulin resistance. Elucidating the mechanisms that regulate β cell mass has important ramifications for fostering β cell regeneration and the treatment of diabetes. We report here that Skp2, a substrate recognition component of Skp1–Cul1–F-box (SCF) ubiquitin ligase, played an essential and specific role in regulating the cellular abundance of p27 and was a critical determinant of β cell proliferation. In Skp2–/– mice, accumulation of p27 resulted in enlarged polyploid β cells as a result of endoreduplication replacing proliferation. Despite β cell hypertrophy, Skp2–/– mice exhibited diminished β cell mass, hypoinsulinemia, and glucose intolerance. Increased insulin resistance resulting from diet-induced obesity caused Skp2–/– mice to become overtly diabetic, because β cell growth in the absence of cell division was insufficient to compensate for increased metabolic demand. These results indicate that the Skp2-mediated degradation pathway regulating the cellular degradation of p27 is essential for establishing β cell mass and to respond to increased metabolic demand associated with insulin resistance.
Citation information
This citation data is accumulated from CrossRef, which receives citation information from participating publishers, including this journal.
Not all publishers participate in CrossRef, so this information is not comprehensive.
Additionally, data may not reflect the most current citations to this article,
and the data may differ from citation information available from other sources
(for example, Google Scholar, Web of Science, and Scopus).
Total citations by year
in CrossRef
Citations to this article
in CrossRef
(9)
| Title and authors |
Publication |
Year |
p27Kip1 controls cytokinesis via the regulation of citron kinase activation
Murielle P. Serres, Uta Kossatz, Yong Chi, James M. Roberts, Nisar P. Malek, Arnaud Besson
|
J. Clin. Invest.
|
2012 |
Adhesion-dependent Skp2 transcription requires selenocysteine tRNA gene transcription-activating factor (STAF)
Ivette Hernández‑Negrete, Graciela B. Sala‑Newby, Andras Perl, Gary R. Kunkel, Andrew C. Newby, Mark Bond
|
Biochem. J.
|
2011 |
Pancreatic β Cell Identity Is Maintained by DNA Methylation-Mediated Repression of Arx
Sangeeta Dhawan, Senta Georgia, Shuen-ing Tschen, Guoping Fan, Anil Bhushan
|
Developmental Cell
|
2011 |
The role of Skp2 in hematopoietic stem cell quiescence, pool size, and self-renewal
J. Wang, F. Han, J. Wu, S.-W. Lee, C.-H. Chan, C.-Y. Wu, W.-L. Yang, Y. Gao, X. Zhang, Y. S. Jeong
|
Blood
|
2011 |
Expansion of β-cell mass in response to pregnancy
Sebastian Rieck, Klaus H. Kaestner
|
Trends in Endocrinology & Metabolism
|
2010 |
Tissue-Specificity and Ethnic Diversity in Obesity-Related Risk of Cancer May Be Explained by Variability in Insulin Response and Insulin Signaling Pathways
John R. Speakman, Michael I. Goran
|
Obesity
|
2010 |
Contribution of postnatally formed small beta cell aggregates to functional beta cell mass in adult rat pancreas
M. Chintinne, G. Stangé, B. Denys, P. In ‘t Veld, K. Hellemans, M. Pipeleers-Marichal, Z. Ling, D. Pipeleers
|
Diabetologia
|
2010 |
Some Cyclin-Dependent Kinase Inhibitors-Related Genes Are Regulated by Vitamin C in a Model of Diet-Induced Obesity
Noemí Boqué, Javier Campión, Fermín Ignacio Milagro, Maria-Jesús Moreno-Aliaga, José Alfredo Martinez
|
Biol. Pharm. Bull.
|
2009 |
Activation of liver X receptors inhibits pancreatic islet beta cell proliferation through cell cycle arrest
Z. X. Meng, J. Nie, J. J. Ling, J. X. Sun, Y. X. Zhu, L. Gao, J. H. Lv, D. Y. Zhu, Y. J. Sun, X. Han
|
Diabetologia
|
2008 |
|