Literature DB >> 15115723

Extracellular matrix: recent advances on its role in junction dynamics in the seminiferous epithelium during spermatogenesis.

Michelle K Y Siu1, C Yan Cheng.   

Abstract

Spermatogenesis takes place in the seminiferous epithelium of the mammalian testis in which one type A1 spermatogonium (diploid, 2n) gives rise to 256 spermatids (haploid, 1n). To accomplish this, developing germ cells, such as preleptotene and leptotene spermatocytes, residing in the basal compartment of the seminiferous epithelium must traverse the blood-testis barrier (BTB) entering into the adluminal compartment for further development into round, elongating, and elongate spermatids. Recent studies have shown that the basement membrane in the testis (a modified form of extracellular matrix, ECM) is important to the event of germ cell movement across the BTB because proteins in the ECM were shown to regulate BTB dynamics via the interactions between collagens, proteases, and protease inhibitors, possibly under the regulation of cytokines. While these findings are intriguing, they are not entirely unexpected. For one, the basement membrane in the testis is intimately associated with the BTB, which represents the basolateral region of Sertoli cells. Also, Sertoli cell tight junctions (TJs) that constitute the BTB are present side-by-side with cell-cell actin-based adherens junctions (AJ, such as basal ectoplasmic specialization [ES]) and intermediate filament-based desmosome-like junctions. As such, the relative morphological layout between TJs, AJs, and desmosome-like junctions in the seminiferous epithelium is in sharp contrast to other epithelia where TJs are located at the apical portion of an epithelium or endothelium, furthest away from ECM, to be followed by AJs and desmosomes, which in turn constitute the junctional complex. For another, anchoring junctions between a cell epithelium and ECM found in multiple tissues, also known as focal contacts (or focal adhesion complex, FAC, an actin-based cell-matrix anchoring junction type), are the most efficient junction type that permits rapid junction restructuring to accommodate cell movement. It is therefore physiologically plausible, and perhaps essential, that the testis is using some components of the focal contacts to regulate rapid restructuring of AJs between Sertoli and germ cells when germ cells traverse the seminiferous epithelium. Indeed, recent findings have shown that the apical ES, a testis-specific AJ type in the seminiferous epithelium, is equipped with proteins of FAC to regulate its restructuring. In this review, we provide a timely update on this exciting yet rapidly developing field regarding how the homeostasis of basement membrane in the tunica propria regulates BTB dynamics and spermatogenesis in the testis, as well as a critical review on the molecular architecture and the regulation of ES in the seminiferous epithelium.

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Year:  2004        PMID: 15115723     DOI: 10.1095/biolreprod.104.028225

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


  24 in total

Review 1.  Actin-based dynamics during spermatogenesis and its significance.

Authors:  Xiang Xiao; Wan-xi Yang
Journal:  J Zhejiang Univ Sci B       Date:  2007-07       Impact factor: 3.066

2.  Drug delivery to the testis: current status and potential pathways for the development of novel therapeutics.

Authors:  Devon C Snow-Lisy; Mary K Samplaski; Vinod Labhasetwar; Edmund S Sabanegh
Journal:  Drug Deliv Transl Res       Date:  2011-10       Impact factor: 4.617

3.  Degenerative effect of Cisplatin on testicular germinal epithelium.

Authors:  Daryosh Mohammadnejad; Ali Abedelahi; Jafar Soleimani-Rad; Ameneh Mohammadi-Roshandeh; Morteza Rashtbar; Ayda Azami
Journal:  Adv Pharm Bull       Date:  2012-06-30

4.  Posthatching development of Alligator mississippiensis ovary and testis.

Authors:  Brandon C Moore; Heather J Hamlin; Nicole L Botteri; Ashley N Lawler; Ketan K Mathavan; Louis J Guillette
Journal:  J Morphol       Date:  2010-05       Impact factor: 1.804

5.  Sertolin mediates blood-testis barrier restructuring.

Authors:  Michelle W M Li; C Yan Cheng; Dolores D Mruk
Journal:  Endocrinology       Date:  2014-01-27       Impact factor: 4.736

6.  GATA4 Regulates Blood-Testis Barrier Function and Lactate Metabolism in Mouse Sertoli Cells.

Authors:  Anja Schrade; Antti Kyrönlahti; Oyediran Akinrinade; Marjut Pihlajoki; Simon Fischer; Verena Martinez Rodriguez; Kerstin Otte; Vidya Velagapudi; Jorma Toppari; David B Wilson; Markku Heikinheimo
Journal:  Endocrinology       Date:  2016-03-14       Impact factor: 4.736

Review 7.  An intracellular trafficking pathway in the seminiferous epithelium regulating spermatogenesis: a biochemical and molecular perspective.

Authors:  C Yan Cheng; Dolores D Mruk
Journal:  Crit Rev Biochem Mol Biol       Date:  2009 Sep-Oct       Impact factor: 8.250

8.  Acute slices of mice testis seminiferous tubules unveil spontaneous and synchronous Ca2+ oscillations in germ cell clusters.

Authors:  Claudia Sánchez-Cárdenas; Adán Guerrero; Claudia Lydia Treviño; Arturo Hernández-Cruz; Alberto Darszon
Journal:  Biol Reprod       Date:  2012-10-18       Impact factor: 4.285

Review 9.  Extracellular matrix and its role in spermatogenesis.

Authors:  Michelle K Y Siu; C Yan Cheng
Journal:  Adv Exp Med Biol       Date:  2008       Impact factor: 2.622

10.  Talin 2 is a large and complex gene encoding multiple transcripts and protein isoforms.

Authors:  Emmanuel Debrand; Yasmine El Jai; Lorraine Spence; Neil Bate; Uta Praekelt; Catrin A Pritchard; Susan J Monkley; David R Critchley
Journal:  FEBS J       Date:  2009-02-07       Impact factor: 5.542

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