Literature DB >> 9491373

The RNA- and DNA-binding protein TB-RBP is spatially and developmentally regulated during spermatogenesis.

W Gu1, X Q Wu, X H Meng, C Morales, M el-Alfy, N B Hecht.   

Abstract

Testis brain RNA-binding protein (TB-RBP) suppresses translation in vitro and attaches mRNAs to microtubules by binding to conserved elements in the 3' untranslated regions (UTRs) of specific testis and brain mRNAs. Purification of TB-RBP from testicular and brain cytoplasmic extracts has revealed that mouse TB-RBP is 99% identical to the human protein translin, a recombination "hot spot" binding protein associated with chromosomal translocations. Using a cDNA encoding TB-RBP, the gene copy number and the developmental expression of TB-RBP have been analyzed by Southern blotting, Northern blotting, and in situ hybridization. In the mouse, TB-RBP is encoded by a single copy gene. In mouse testes, three TB-RBP mRNAs of about 1.2, 1.7, and 3.0 kb are developmentally regulated with high levels of expression in meiotic and postmeiotic germ cells. A fourth TB-RBP transcript of about 3.2 kb is seen in the brain. In situ hybridization confirms high levels of testicular TB-RBP mRNAs in meiotic and postmeiotic cells, with the highest levels of TB-RBP mRNAs in pachytene spermatocytes and round spermatids of the mouse and in round spermatids of the rat. RNase H digestion assays reveal that the three TB-RBP mRNAs of mouse testes result from processing differences in their 3' untranslated regions. These data demonstrate that multiple TB-RBP mRNAs are primarily expressed in meiotic and postmeiotic germ cells in the mammalian testis, and although the specific RNA-binding ability of TB-RBP appears limited to brain and testis, TB-RBP mRNAs are widely expressed.

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Year:  1998        PMID: 9491373     DOI: 10.1002/(SICI)1098-2795(199803)49:3<219::AID-MRD1>3.0.CO;2-R

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


  5 in total

1.  piRNA profiling during specific stages of mouse spermatogenesis.

Authors:  Haiyun Gan; Xiwen Lin; Zhuqiang Zhang; Wei Zhang; Shangying Liao; Lixian Wang; Chunsheng Han
Journal:  RNA       Date:  2011-05-20       Impact factor: 4.942

2.  Behavioral and neurochemical alterations in mice lacking the RNA-binding protein translin.

Authors:  Joel M Stein; Wayland Bergman; Yanshan Fang; Lakesha Davison; Colleen Brensinger; Michael B Robinson; Norman B Hecht; Ted Abel
Journal:  J Neurosci       Date:  2006-02-22       Impact factor: 6.167

Review 3.  Translin: A multifunctional protein involved in nucleic acid metabolism.

Authors:  Alka Gupta; Vinayaki S Pillai; Rajani Kant Chittela
Journal:  J Biosci       Date:  2019-12       Impact factor: 1.826

Review 4.  Critical windows of exposure for children's health: the reproductive system in animals and humans.

Authors:  J L Pryor; C Hughes; W Foster; B F Hales; B Robaire
Journal:  Environ Health Perspect       Date:  2000-06       Impact factor: 9.031

5.  Regulation of RNA Interference Pathways in the Insect Vector Laodelphax striatellus by Viral Proteins of Rice Stripe Virus.

Authors:  Yan Xiao; Qiong Li; Wei Wang; Yumei Fu; Feng Cui
Journal:  Viruses       Date:  2021-08-11       Impact factor: 5.048

  5 in total

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