Literature DB >> 16967499

Premature translation of transition protein 2 mRNA causes sperm abnormalities and male infertility.

Khailun Tseden1, Ozlem Topaloglu, Andreas Meinhardt, Arvind Dev, Ibrahim Adham, Christian Müller, Stephan Wolf, Detlef Böhm, Gregor Schlüter, Wolfgang Engel, Karim Nayernia.   

Abstract

During mammalian spermiogenesis somatic histones are replaced at first by transition proteins, which are in turn replaced by the protamines, forming the sperm nucleoprotamines. It is believed that transition protein 2 (Tnp2) is necessary for maintaining the normal processing of protamines and, consequently, the completion of chromatin condensation. The transition protein mRNAs are stored in translationally inert messenger ribonucleoprotein particles for up to 7 days until translational activation in elongated spermatids. Substantial evidence suggests an involvement of 3'untranslated region (UTR) in the translational regulation of the Tnp2 mRNAs. In order to determine the role of Tnp2 3'UTR in translational regulation and to study whether the translational repression of Tnp2 mRNA is necessary for normal spermatid differentiation in mice, we generated transgenic mice that carry a Tnp2-hGH transgene. In this transgene, 3'UTR of Tnp2 gene was replaced by 3' 3'UTR of human growth hormone gene. In these transgenic animals, transcription and translation of Tnp2 occur simultaneously in round spermatids which is an evidence for involvement of Tnp2 3'UTR in its translation repression. Premature translation of Tnp2 mRNA caused abnormal head morphogenesis, reduced sperm motility and male infertility. These results show clearly that a strict temporal and stage-specific Tnp2 translation is necessary for the correct differentiation of round spermatids into mature spermatozoa and for male fertility. (c) 2006 Wiley-Liss, Inc.

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Year:  2007        PMID: 16967499     DOI: 10.1002/mrd.20570

Source DB:  PubMed          Journal:  Mol Reprod Dev        ISSN: 1040-452X            Impact factor:   2.609


  18 in total

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2.  Protein acetylation and spermatogenesis.

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3.  Targeted knock-in mice with a human mutation in GRTH/DDX25 reveals the essential role of phosphorylated GRTH in spermatid development during spermatogenesis.

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4.  MicroRNA-122 influences the development of sperm abnormalities from human induced pluripotent stem cells by regulating TNP2 expression.

Authors:  Te Liu; Yongyi Huang; Jianjun Liu; Yanhui Zhao; Lizhen Jiang; Qin Huang; Weiwei Cheng; Lihe Guo
Journal:  Stem Cells Dev       Date:  2013-03-06       Impact factor: 3.272

5.  Roles of RNA-binding Proteins and Post-transcriptional Regulation in Driving Male Germ Cell Development in the Mouse.

Authors:  Donny D Licatalosi
Journal:  Adv Exp Med Biol       Date:  2016       Impact factor: 2.622

6.  Quantitative analysis of mRNA translation in mammalian spermatogenic cells with sucrose and Nycodenz gradients.

Authors:  Kenneth C Kleene; Jana Bagarova; Sabrina K Hawthorne; Leah M Catado
Journal:  Reprod Biol Endocrinol       Date:  2010-12-25       Impact factor: 5.211

7.  Association of TNP2 gene polymorphisms of the bta-miR-154 target site with the semen quality traits of Chinese Holstein bulls.

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8.  Sperm chromatin integrity: etiologies and mechanisms of abnormality, assays, clinical importance, preventing and repairing damage.

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Review 9.  Estrogens and spermiogenesis: new insights from type 1 cannabinoid receptor knockout mice.

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10.  Assessment of chromatin maturity in human spermatozoa: useful aniline blue assay for routine diagnosis of male infertility.

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