Urocortin in the central nervous system of a primate (Cebus apella): Sequencing, immunohistochemical, and hybridization histochemical characterization


Autoria(s): Vasconcelos, LAP; Donaldson, C.; Sita, L. V.; Casatti, Cláudio Aparecido; Lotfi, CFP; Wang, L. Q.; Cadinouche, MZA; Frigo, L.; Elias, C. F.; Lovejoy, D. A.; Bittencourt, J. C.
Contribuinte(s)

Universidade Estadual Paulista (UNESP)

Data(s)

20/05/2014

20/05/2014

18/08/2003

Resumo

The urocortin (UCN)-like immunoreactivity and UCN mRNA distribution in various regions of the nonprimate mammalian brain have been reported. However, the Edinger-Westphal nucleus (EW) appears to be the only brain site where UCN expression is conserved across species. Although UCN peptides are present throughout vertebrate phylogeny, the functional roles of both UCN and EW remain poorly understood. Therefore, a study focused on UCN system organization in the primate brain is warranted. By using immunohistochemistry (single and double labeling) and in situ hybridization, we have characterized the organization of UCN-expressing cells and fibers in the central nervous system and pituitary of the capuchin monkey (Cebus apella). In addition, the sequence of the prepro-UCN was determined to establish the level of structural conservation relative to the human sequence. To understand the relationship of acetylcholine cells in the EW, a colocalization study comparing choline acetyltransferase (ChAT) and UCN was also performed. The cloned monkey prepro-UCN is 95% identical to the human preprohormone across the matched sequences. By using an antiserum raised against rat UCN and a probe generated from human cDNA, we found that the EW is the dominant site for UCN expression, although UCN mRNA is also expressed in spinal cord lamina IX. Labeled axons and terminals were distributed diffusely throughout many brain regions and along the length of the spinal cord. of particular interest were UCN-immunoreactive inputs to the medial preoptic area, the paraventricular nucleus of the hypothalamus, the oral part of the spinal trigeminal nucleus, the flocculus of the cerebellum, and the spinal cord laminae VII and X. We found no UCN hybridization signal in the pituitary. In addition, we observed no colocalization between ChAT and UCN in EW neurons. Our results support the hypothesis that the UCN system might participate in the control of autonomic, endocrine, and sensorimotor functions in primates.

Formato

157-175

Identificador

http://dx.doi.org/10.1002/cne.10742

Journal of Comparative Neurology. Malden: Wiley-blackwell, v. 463, n. 2, p. 157-175, 2003.

0021-9967

http://hdl.handle.net/11449/33061

10.1002/cne.10742

WOS:000184077500003

Idioma(s)

eng

Publicador

Wiley-Blackwell

Relação

Journal of Comparative Neurology

Direitos

closedAccess

Palavras-Chave #autonomic nervous system #corticotropin-releasing factor #Edinger-Westphal nucleus #oculomotor nucleus #neuropeptides #stress #monkey brain #paraventricular nucleus of the hypothalamus #hypophysis #choline acetyltransferase
Tipo

info:eu-repo/semantics/article