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Aip1p Dynamics Are Altered by the R256H Mutation in Actin
Published on: July 30, 2014
Augmented Growth Hormone Secretion and Stat3 Phosphorylation in an Aryl Hydrocarbon Receptor Interacting Protein
Takashi Fukuda1, Tomoko Tanaka1,2, Yuriko Hamaguchi1
1Department of Endocrinology and Diabetes Mellitus, Faculty of Medicine, Fukuoka University, Fukuoka, Japan.
Abstract:
Aryl hydrocarbon receptor interacting protein (AIP) is thought to be a tumor suppressor gene, as indicated by a mutational analysis of pituitary somatotroph adenomas. However, the physiological significance of AIP inactivation in somatotroph cells remains unclear. Using CRISPR/Cas9, we identified a GH3 cell clone (termed GH3-FTY) in which Aip was genetically disrupted, and subsequently investigated its character with respect to growth hormone (Gh) synthesis and proliferation. Compared with GH3, GH3-FTY cells showed remarkably increased Gh production and a slight increase in cell proliferation. Gh-induced Stat3 phosphorylation is known to be a mechanism of Gh oversecretion in GH3. Interestingly, phosphorylated-Stat3 expression in GH3-FTY cells was increased more compared with GH3 cells, suggesting a stronger drive for this mechanism in GH3-FTY. The phenotypes of GH3-FTY concerning Gh overproduction, cell proliferation, and increased Stat3 phosphorylation were significantly reversed by the exogenous expression of Aip. GH3-FTY cells were less sensitive to somatostatin than GH3 cells in the suppression of cell proliferation, which might be associated with the reduced expression of somatostatin receptor type 2. GH3-FTY xenografts in BALB/c nude mice (GH3-FTY mice) formed more mitotic somatotroph tumors than GH3 xenografts (GH3 mice), as also evidenced by increased Ki67 scores. GH3-FTY mice were also much larger and had significantly higher plasma Gh levels than GH3 mice. Furthermore, GH3-FTY mice showed relative insulin resistance compared with GH3 mice. In conclusion, we established a somatotroph cell line, GH3-FTY, which possessed prominent Gh secretion and mitotic features associated with the disruption of Aip.
Insights
Aryl hydrocarbon receptor interacting protein (AIP) disruption in pituitary cells promotes growth hormone (Gh) overproduction and tumor growth. Restoring AIP normalizes these aggressive tumor features, highlighting AIP
Area of Science:
- Endocrinology
- Molecular Biology
- Oncology
Background:
- Aryl hydrocarbon receptor interacting protein (AIP) is implicated as a tumor suppressor in pituitary adenomas.
- The functional role of AIP inactivation in somatotroph cells requires further elucidation.
Purpose of the Study:
- To investigate the physiological impact of AIP genetic disruption in somatotroph cells.
- To characterize the resulting cell line's growth hormone (Gh) synthesis, proliferation, and tumor-forming potential.
Main Methods:
- CRISPR/Cas9 gene editing to create an Aip-disrupted GH3 cell clone (GH3-FTY).
- Comparative analysis of GH3 and GH3-FTY cells regarding Gh production, proliferation, and signaling pathways (Stat3 phosphorylation).
- Assessment of somatostatin sensitivity and xenograft tumor formation in vivo.
Main Results:
- GH3-FTY cells exhibited significantly increased Gh production and proliferation compared to GH3 cells.
- Elevated Stat3 phosphorylation in GH3-FTY cells suggests enhanced Gh oversecretion mechanisms.
- GH3-FTY xenografts formed more aggressive tumors with higher Gh levels and induced insulin resistance in mice.
Conclusions:
- Aip disruption in somatotroph cells drives aggressive phenotypes, including enhanced Gh secretion and tumor growth.
- AIP plays a critical role in suppressing pituitary tumor progression.
- The established GH3-FTY cell line serves as a valuable model for studying AIP's function in pituitary adenomas.
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