TY - JOUR
T1 - Anterior pituitary pyroglutamyl peptidase II activity controls TRH-induced prolactin release
AU - Cruz, Raymundo
AU - Vargas, Miguel Angel
AU - Uribe, Rosa Maria
AU - Pascual, Isel
AU - Lazcano, Ivan
AU - Yiotakis, Athanasios
AU - Matziari, Magdalini
AU - Joseph-Bravo, Patricia
AU - Charli, Jean Louis
N1 - Funding Information:
The authors thank the technical help of M. Cisneros, as well as the animal care by S. Gonzalez. This work was supported by grants 39931 from CONACYT to J.L.C., 24975 from CONACYT to M.A.V., IN226406-3 from DGAPA-UNAM to J.L.C., 3276/2 from International Foundation for Sciences and the Wood Wheland Program (IUBMB) to I.P.
PY - 2008/11
Y1 - 2008/11
N2 - Ecto-peptidases modulate the action of peptides in the extracellular space. The relationship between peptide receptor and ecto-peptidase localization, and the physiological role of peptidases is poorly understood. Current evidence suggests that pyroglutamyl peptidase II (PPII) inactivates neuronally released thyrotropin-releasing hormone (TRH). The impact of PPII localization in the anterior pituitary on the endocrine activities of TRH is unknown. We have studied whether PPII influences TRH signaling in anterior pituitary cells in primary culture. In situ hybridization (ISH) experiments showed that PPII mRNA was expressed only in 5-6% of cells. ISH for PPII mRNA combined with immunocytochemistry for prolactin, β-thyrotropin, or growth hormone, showed that 66% of PPII mRNA expressing cells are lactotrophs, 34% somatotrophs while none are thyrotrophs. PPII activity was reduced using a specific phosphorothioate antisense oligodeoxynucleotide or inhibitors. Compared with mock or scrambled oligodeoxynucleotide-treated controls, knock-down of PPII expression by antisense targeting increased TRH-induced release of prolactin, but not of thyrotropin. Similar data were obtained with either a transition-state or a tight binding inhibitor. These results demonstrate that PPII expression in lactotrophs coincides with its ability to control prolactin release. It may play a specialized role in TRH signaling in the anterior pituitary. Anterior pituitary ecto-peptidases may fulfill unique functions associated with their restricted cell-specific expression.
AB - Ecto-peptidases modulate the action of peptides in the extracellular space. The relationship between peptide receptor and ecto-peptidase localization, and the physiological role of peptidases is poorly understood. Current evidence suggests that pyroglutamyl peptidase II (PPII) inactivates neuronally released thyrotropin-releasing hormone (TRH). The impact of PPII localization in the anterior pituitary on the endocrine activities of TRH is unknown. We have studied whether PPII influences TRH signaling in anterior pituitary cells in primary culture. In situ hybridization (ISH) experiments showed that PPII mRNA was expressed only in 5-6% of cells. ISH for PPII mRNA combined with immunocytochemistry for prolactin, β-thyrotropin, or growth hormone, showed that 66% of PPII mRNA expressing cells are lactotrophs, 34% somatotrophs while none are thyrotrophs. PPII activity was reduced using a specific phosphorothioate antisense oligodeoxynucleotide or inhibitors. Compared with mock or scrambled oligodeoxynucleotide-treated controls, knock-down of PPII expression by antisense targeting increased TRH-induced release of prolactin, but not of thyrotropin. Similar data were obtained with either a transition-state or a tight binding inhibitor. These results demonstrate that PPII expression in lactotrophs coincides with its ability to control prolactin release. It may play a specialized role in TRH signaling in the anterior pituitary. Anterior pituitary ecto-peptidases may fulfill unique functions associated with their restricted cell-specific expression.
KW - Anterior pituitary
KW - Growth hormone
KW - Prolactin
KW - Pyroglutamyl peptidase
KW - TRH
KW - Thyrotropin
UR - http://www.scopus.com/inward/record.url?scp=54049101567&partnerID=8YFLogxK
U2 - 10.1016/j.peptides.2008.07.011
DO - 10.1016/j.peptides.2008.07.011
M3 - Article
C2 - 18703099
AN - SCOPUS:54049101567
SN - 0196-9781
VL - 29
SP - 1953
EP - 1964
JO - Peptides
JF - Peptides
IS - 11
ER -