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Published on: March 2, 2018
Cdk4 is indispensable for postnatal proliferation of the anterior pituitary
Siwanon Jirawatnotai1, Aileen Aziyu, Evan C Osmundson
1Department of Biochemistry, University of Illinois College of Medicine, Chicago, Illinois 60607, USA.
Abstract:
For proper development and tissue homeostasis, cell cycle progression is controlled by multilayered mechanisms. Recent studies using knock-out mice have shown that animals can develop relatively normally with deficiency for each of the G1/S-regulatory proteins, D-type and E-type cyclins, cyclin-dependent kinase 4 (Cdk4), and Cdk2. Although Cdk4-null mice show no embryonic lethality, they exhibit specific endocrine phenotypes, i.e. dwarfism, infertility, and diabetes. Here we have demonstrated that Cdk4 plays an essential non-redundant role in postnatal proliferation of the anterior pituitary. Pituitaries from wild-type and Cdk4-null embryos at embryonic day 17.5 are morphologically indistinguishable with similar numbers of cells expressing a proliferating marker, Ki67, and cells expressing a differentiation marker, growth hormone. In contrast, anterior pituitaries of Cdk4-null mice at postnatal 8 weeks are extremely hypoplastic with markedly decreased numbers of Ki67+ cells, suggesting impaired cell proliferation. Pituitary hyperplasia induced by transgenic expression of human growth hormone-releasing hormone (GHRH) is significantly diminished in the Cdk4+/- genetic background and completely abrogated in the Cdk4-/- background. Small interfering RNA (siRNA)-mediated knockdown of Cdk4 inhibits GHRH-induced proliferation of GH3 somato/lactotroph cells with restored expression of GHRH receptors. Cdk4 siRNA also inhibits estrogen-dependent cell proliferation in GH3 cells and closely related GH4 cells. In contrast, Cdk6 siRNA does not diminish proliferation of these cells. Furthermore, Cdk4 siRNA does not affect GHRH-induced proliferation of mouse embryonic fibroblasts or estrogen-dependent proliferation of mammary carcinoma MCF-7 cells. Taken together, Cdk4 is dispensable for prenatal development of the pituitary or proliferation of other non-endocrine tissues but indispensable specifically for postnatal proliferation of somato/lactotrophs.
Insights
Cyclin-dependent kinase 4 (Cdk4) is essential for postnatal pituitary cell proliferation, but not prenatal development or other tissues. Cdk4 deficiency leads to hypoplastic pituitaries and impaired endocrine function.
Area of Science:
- Endocrinology
- Cell Biology
- Molecular Biology
Background:
- Cell cycle progression is tightly regulated for tissue homeostasis.
- While some G1/S-regulatory proteins can be compensated for, Cdk4 deficiency causes endocrine issues like dwarfism and diabetes.
Purpose of the Study:
- To investigate the specific role of Cyclin-dependent kinase 4 (Cdk4) in postnatal anterior pituitary development and proliferation.
- To determine if Cdk4 plays a non-redundant role in pituitary cell growth.
Main Methods:
- Comparison of pituitary morphology and cell proliferation markers (Ki67) in wild-type and Cdk4-null mice at embryonic and postnatal stages.
- Assessment of pituitary hyperplasia in response to human growth hormone-releasing hormone (GHRH) in Cdk4+/- and Cdk4-/- mice.
- siRNA-mediated knockdown of Cdk4 in GH3 somato/lactotroph cells to evaluate its effect on GHRH- and estrogen-induced proliferation.
Main Results:
- Cdk4-null embryonic pituitaries are morphologically normal, but postnatal pituitaries are hypoplastic with reduced proliferation.
- Cdk4 deficiency significantly impairs GHRH-induced pituitary hyperplasia and abrogates it in Cdk4-/- mice.
- Cdk4 knockdown inhibits GHRH- and estrogen-induced proliferation in pituitary cells, but not in fibroblasts or mammary cells, unlike Cdk6.
Conclusions:
- Cdk4 is dispensable for prenatal pituitary development and proliferation in non-endocrine tissues.
- Cdk4 is indispensable for postnatal proliferation of anterior pituitary somato/lactotrophs.
- Cdk4 plays a specific, non-redundant role in regulating pituitary cell growth postnatally.
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