Literature DB >> 20124096

Components of the basal lamina and dystrophin-dystroglycan complex in the neurointermediate lobe of rat pituitary gland: different localizations of beta-dystroglycan, dystrobrevins, alpha1-syntrophin, and aquaporin-4.

Károly Pócsai1, Zsolt Bagyura, Mihály Kálmán.   

Abstract

The so-called neurointermediate lobe is composed of the intermediate and neural lobes of the pituitary. The present immunohistochemical study investigated components of the basal lamina (laminin, agrin, and perlecan), the dystrophin-dystroglycan complex (dystrophin, beta-dystroglycan, alpha1-dystrobrevin, beta-dystrobrevin, utrophin, and alpha1-syntrophin), and the aquaporins (aquaporin-4 and -9). Glia markers (GFAP, S100, and glutamine synthetase) and components of connective tissue (collagen type I and fibronectin) were also labeled. In the neurohypophysis, immunostaining of basal lamina delineated meningeal invaginations. In these invaginations, vessels were seen to penetrate the organ without submerging into its parenchyma. On the parenchymal side of the invaginations, beta-dystroglycan was detected, whereas utrophin was detected in the walls of vessels. Immunostaining of alpha1-dystrobrevin and alpha1-syntrophin did not delineate the vessels. The cells of the intermediate lobe were fully immunoreactive to alpha1-dystrobrevin and alpha1-syntrophin, whereas components of the basal lamina delineated the contours of the cells. GFAP-immunoreactive processes surrounded them. Aquaporin-4 localized at the periphery of the neurohypophysis, mainly adjacent to the intermediate lobe but not along the vessels. It colocalized only partially with GFAP and not at all with alpha1-syntrophin. Aquaporin-9 was not detected. These results emphasize the possibility that the components of the dystrophin-dystroglycan complex localize differently and raise the question about the roles of dystrobrevins, alpha1-syntrophin, and aquaporin-4 in the functions of the intermediate and neural lobes, respectively.

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Year:  2010        PMID: 20124096      PMCID: PMC2857818          DOI: 10.1369/jhc.2010.954768

Source DB:  PubMed          Journal:  J Histochem Cytochem        ISSN: 0022-1554            Impact factor:   2.479


  109 in total

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Authors:  M D Henry; K P Campbell
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Review 3.  Role of dystrophin and utrophin for assembly and function of the dystrophin glycoprotein complex in non-muscle tissue.

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4.  S100 protein in folliculostellate cells of the rat pituitary anterior lobe.

Authors:  T Nakajima; H Yamaguchi; K Takahashi
Journal:  Brain Res       Date:  1980-06-09       Impact factor: 3.252

Review 5.  Anchoring of aquaporin-4 in brain: molecular mechanisms and implications for the physiology and pathophysiology of water transport.

Authors:  M Amiry-Moghaddam; D S Frydenlund; O P Ottersen
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6.  Differential expression of utrophin and dystrophin in CNS neurons: an in situ hybridization and immunohistochemical study.

Authors:  I Knuesel; B C Bornhauser; R A Zuellig; F Heller; M C Schaub; J M Fritschy
Journal:  J Comp Neurol       Date:  2000-07-10       Impact factor: 3.215

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Authors:  L Dorbani-Mamine; M E Stoeckel; V Jancsik; G Ayad; A Rendon
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8.  Immunohistochemistry of folliculo-stellate cells in normal human adenohypophyses and in pituitary adenomas.

Authors:  H Höfler; G F Walter; H Denk
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Authors:  T S Khurana; S C Watkins; L M Kunkel
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