Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

8037 Ciliopathy Genes are Expressed in the Developing Pituitary Gland and Mature Hormone-Producing Cells

View through CrossRef
Abstract Disclosure: S.W. Athul: None. N. Jaramillo: None. B.S. Ellsworth: None. Primary cilia play critical roles in several signaling pathways including sonic hedgehog and Wnt to help regulate cell differentiation and proliferation. Ciliopathies are a group of disorders associated with genetic mutations resulting in an abnormal formation or structure of the primary cilium. Recently, congenital hypopituitarism was identified in some patients with ciliopathies. To begin to evaluate the role of these genes in pituitary gland function, we used the International Mouse Phenotyping Consortium (IMPC) database to identify several ciliopathy genes that, when mutated, cause pituitary hypoplasia in mice. To determine if primary cilia are present in the somatotrope-like GHFT1-5 cells, ARL13B, a regulatory GTPase protein that is localized to the ciliary membrane, was identified. In the absence of serum, it was seen that the number of cilia present was relatively high, likely as a result of the lower rate of cell division. Gene expression of the ciliopathy genes, Cc2d2a, Mks1, and Pibf1 was detected via RT-qPCR in GHFT1-5 cells. While Mks1 and Pibf1 were expressed at low levels, Cc2d2a was more robustly expressed. Expression of Cc2d2a, Mks1, Pibf1, and Rpgrip1l was observed on adult pituitary glands of C57BL/6 mice. Consistent with active SHH signaling during early pituitary organogenesis we see the expression of Rpgrip1l and Pibf1 in Rathke’s pouch at e10.5, 11.5, and e12.5. ARL13B and α-Tubulin, markers of primary cilia, were used to determine which hormone-producing cell types contain primary cilia in adult and e18.5 C57BL/6 mice. Primary cilia are present in a fraction of all hormone-producing cell types. These studies suggest that primary cilia are present in the pituitary gland during early organogenesis and may also be involved in the function of mature hormone-producing cells. Understanding the function of ciliopathy genes is important for expanding our understanding of congenital hypopituitarism. Presentation: 6/3/2024
Title: 8037 Ciliopathy Genes are Expressed in the Developing Pituitary Gland and Mature Hormone-Producing Cells
Description:
Abstract Disclosure: S.
W.
Athul: None.
N.
Jaramillo: None.
B.
S.
Ellsworth: None.
Primary cilia play critical roles in several signaling pathways including sonic hedgehog and Wnt to help regulate cell differentiation and proliferation.
Ciliopathies are a group of disorders associated with genetic mutations resulting in an abnormal formation or structure of the primary cilium.
Recently, congenital hypopituitarism was identified in some patients with ciliopathies.
To begin to evaluate the role of these genes in pituitary gland function, we used the International Mouse Phenotyping Consortium (IMPC) database to identify several ciliopathy genes that, when mutated, cause pituitary hypoplasia in mice.
To determine if primary cilia are present in the somatotrope-like GHFT1-5 cells, ARL13B, a regulatory GTPase protein that is localized to the ciliary membrane, was identified.
In the absence of serum, it was seen that the number of cilia present was relatively high, likely as a result of the lower rate of cell division.
Gene expression of the ciliopathy genes, Cc2d2a, Mks1, and Pibf1 was detected via RT-qPCR in GHFT1-5 cells.
While Mks1 and Pibf1 were expressed at low levels, Cc2d2a was more robustly expressed.
Expression of Cc2d2a, Mks1, Pibf1, and Rpgrip1l was observed on adult pituitary glands of C57BL/6 mice.
Consistent with active SHH signaling during early pituitary organogenesis we see the expression of Rpgrip1l and Pibf1 in Rathke’s pouch at e10.
5, 11.
5, and e12.
5.
ARL13B and α-Tubulin, markers of primary cilia, were used to determine which hormone-producing cell types contain primary cilia in adult and e18.
5 C57BL/6 mice.
Primary cilia are present in a fraction of all hormone-producing cell types.
These studies suggest that primary cilia are present in the pituitary gland during early organogenesis and may also be involved in the function of mature hormone-producing cells.
Understanding the function of ciliopathy genes is important for expanding our understanding of congenital hypopituitarism.
Presentation: 6/3/2024.

Related Results

Morphometric analysis of pituitary gland using magnetic resonance imaging in Indian subjects
Morphometric analysis of pituitary gland using magnetic resonance imaging in Indian subjects
Background: Before the advent of magnetic resonance imaging (MRI), the radiological assessment of the hypothalamic-pituitary region relied on plain radiographs and computed tomogra...
Morphometric analysis of pituitary gland using magnetic resonance imaging in Indian subjects
Morphometric analysis of pituitary gland using magnetic resonance imaging in Indian subjects
Background: Before the advent of magnetic resonance imaging (MRI), the radiological assessment of the hypothalamic-pituitary region relied on plain radiographs and computed tomogra...
COVID-19 induced hypercoagulability and its impact leading to pituitary apoplexy
COVID-19 induced hypercoagulability and its impact leading to pituitary apoplexy
I am writing this letter to address an increasingly high-risk but under-explored complication of pituitary apoplexy in patients who have contracted COVID-19. In light of recent res...
Complex Collision Tumors: A Systematic Review
Complex Collision Tumors: A Systematic Review
Abstract Introduction: A collision tumor consists of two distinct neoplastic components located within the same organ, separated by stromal tissue, without histological intermixing...
ÜBER DRÜSEN‐NERVENZELLEN UND NEUROSEKRETORISCHE ORGANE BEI WIRBELLOSEN UND WIRBELTIEREN
ÜBER DRÜSEN‐NERVENZELLEN UND NEUROSEKRETORISCHE ORGANE BEI WIRBELLOSEN UND WIRBELTIEREN
ZusammenfassungWir stellen hier die “Drüsen‐Nervenzelle” als einen neuen Zelltypus zur Diskussion. Wir verstehen darunter Nervenzellen, die mehr oder weniger das Bild sekretorisch ...
Molecular pathogenesis of pituitary tumours
Molecular pathogenesis of pituitary tumours
Abstract Pituitary adenomas are discovered in up to 25% of unselected autopsies, however, clinically apparent tumours are considerably less common. The pituitary gla...

Back to Top