Literature DB >> 12493695

Regulated expression and ultrastructural localization of galectin-1, a proapoptotic beta-galactoside-binding lectin, during spermatogenesis in rat testis.

Luis Dettin1, Natalia Rubinstein, Agustín Aoki, Gabriel A Rabinovich, Cristina A Maldonado.   

Abstract

Galectin-1, a highly conserved beta-galactoside-binding protein, induces apoptosis of activated T cells and suppresses the development of autoimmunity and chronic inflammation. To gain insight regarding the potential role of galectin-1 as a novel mechanism of immune privilege, we investigated expression and ultrastructural localization of galectin-1 in rat testis. Galectin-1 expression was assessed by Western blot analysis and immunocytochemical localization in testes obtained from rats aged from 9 to 60 days. Expression of this carbohydrate-binding protein was developmentally regulated, and its immunolabeling exhibited a stage-specific pattern throughout the spermatogenic process. Immunogold staining using the anti-galectin-1 antibody revealed the typical Sertoli cell profile in the seminiferous epithelium, mainly at stages X-II. During spermiation (stages VI-VIII), a strong labeling was observed at the luminal pole of seminiferous epithelium, localized on apical stalks of Sertoli cells, on heads of mature spermatids, and on bodies of residual cytoplasm. Moreover, spermatozoa released into the lumen showed a strong immunostaining. Following spermiation (stage VIII), galectin-1 expression was restored at the basal portion of Sertoli cells and progressively spread out through the whole cells as differentiation of germinal cells proceeded. Immunoelectron microscopy confirmed distribution of galectin-1 in nuclei and cytoplasmic projections of Sertoli cells and on heads and tails of late spermatids and residual bodies. Surface localization of galectin-1 was evidenced in spermatozoa from caput epididymis. Thus, the regulated expression of galectin-1 during the spermatogenic cycle suggests a novel role for this immunosuppressive lectin in reproductive biology.

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Year:  2003        PMID: 12493695     DOI: 10.1095/biolreprod.102.006361

Source DB:  PubMed          Journal:  Biol Reprod        ISSN: 0006-3363            Impact factor:   4.285


  19 in total

1.  Immunohistochemical study of a membrane skeletal molecule, protein 4.1G, in mouse seminiferous tubules.

Authors:  Nobuo Terada; Nobuhiko Ohno; Hisashi Yamakawa; Osamu Ohara; Xiaogang Liao; Takeshi Baba; Shinichi Ohno
Journal:  Histochem Cell Biol       Date:  2005-10-28       Impact factor: 4.304

2.  Spermiation: The process of sperm release.

Authors:  Liza O'Donnell; Peter K Nicholls; Moira K O'Bryan; Robert I McLachlan; Peter G Stanton
Journal:  Spermatogenesis       Date:  2011-01

3.  Galectin-3 drives oligodendrocyte differentiation to control myelin integrity and function.

Authors:  L A Pasquini; V Millet; H C Hoyos; J P Giannoni; D O Croci; M Marder; F T Liu; G A Rabinovich; J M Pasquini
Journal:  Cell Death Differ       Date:  2011-05-13       Impact factor: 15.828

4.  Characterization and functionality of proliferative human Sertoli cells.

Authors:  Kitty Chui; Alpa Trivedi; C Yan Cheng; Diana B Cherbavaz; Paul F Dazin; Ai Lam Thu Huynh; James B Mitchell; Gabriel A Rabinovich; Linda J Noble-Haeusslein; Constance M John
Journal:  Cell Transplant       Date:  2010-11-05       Impact factor: 4.064

Review 5.  Engineering galectin-glycan interactions for immunotherapy and immunomodulation.

Authors:  Shaheen A Farhadi; Gregory A Hudalla
Journal:  Exp Biol Med (Maywood)       Date:  2016-05

6.  Egress of sperm autoantigen from seminiferous tubules maintains systemic tolerance.

Authors:  Kenneth S K Tung; Jessica Harakal; Hui Qiao; Claudia Rival; Jonathan C H Li; Alberta G A Paul; Karen Wheeler; Patcharin Pramoonjago; Constance M Grafer; Wei Sun; Robert D Sampson; Elissa W P Wong; Prabhakara P Reddi; Umesh S Deshmukh; Daniel M Hardy; Huanghui Tang; C Yan Cheng; Erwin Goldberg
Journal:  J Clin Invest       Date:  2017-02-20       Impact factor: 14.808

7.  Suppression of autoimmune diabetes by soluble galectin-1.

Authors:  Marcelo J Perone; Suzanne Bertera; William J Shufesky; Sherrie J Divito; Angela Montecalvo; Alicia R Mathers; Adriana T Larregina; Mabel Pang; Nilufer Seth; Kai W Wucherpfennig; Massimo Trucco; Linda G Baum; Adrian E Morelli
Journal:  J Immunol       Date:  2009-03-01       Impact factor: 5.422

8.  Severe preeclampsia is characterized by increased placental expression of galectin-1.

Authors:  Nandor Gabor Than; Offer Erez; Derek E Wildman; Adi L Tarca; Samuel S Edwin; Asad Abbas; John Hotra; Juan Pedro Kusanovic; Francesca Gotsch; Sonia S Hassan; Jimmy Espinoza; Zoltan Papp; Roberto Romero
Journal:  J Matern Fetal Neonatal Med       Date:  2008-07

Review 9.  Galectin-1: a bifunctional regulator of cellular proliferation.

Authors:  Ken Scott; Cristina Weinberg
Journal:  Glycoconj J       Date:  2002       Impact factor: 2.916

10.  The role of cell adhesion molecules in ischemic epididymal injury.

Authors:  Hayrettin Ozturk; Hulya Ozturk; Ali Ihsan Dokucu
Journal:  Int Urol Nephrol       Date:  2007-07-27       Impact factor: 2.370

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