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PMID: 8668189 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

The testis-specific high-mobility-group protein, a phosphorylation-dependent DNA-packaging factor of elongating and condensing spermatids.

Molecular and cellular biology ·Vol. 16 ·No. 7 ·1996-07-00 ·Pages 3720-9

Alami-Ouahabi N, Veilleux S, Meistrich ML, Boissonneault G

Abstract

Mammalian spermiogenesis is characterized by a striking restructuring of the spermatid chromatin caused by the replacement of nucleohistones with transition proteins and their subsequent replacement with nucleoprotamines. The onset of nuclear elongation and chromatin condensation in spermatids is accompanied by a general decrease in the transcriptional activity of the DNA. A recently identified testis-specific high-mobility-group (tsHMG) protein, similar to the human mitochondrial transcription factor I and to the linker-associated protein delta of Tetrahymena thermophila micronuclei, is thought to play a structural role in this process. We confirm by immunoblot analysis of fractionated germ cells that the presence of tsHMG is restricted to transcriptionally quiescent elongating and condensing spermatids. Purified recombinant tsHMG protein displays preferential binding to supercoiled plasmid DNA, which reversibly protects the DNA against the DNA-relaxing activity of eukaryotic topoisomerase I and also impairs the transcriptional activity of this template when assayed in vitro. The tsHMG protein can also introduce negative supercoils into a relaxed plasmid substrate in a topoisomerase I-dependent manner. We also show that the tsHMG protein is the substrate of a Ca2+-phospholipid-dependent protein kinase (protein kinase C) present in testis extracts of adult mice and demonstrate that phosphorylation by protein kinase C is required for both the DNA-binding and the topoisomerase I-dependent supercoiling activities of tsHMG. Our results support the hypothesis that the spermatid tsHMG protein is a topological factor (transition protein) that can modulate the activity of topoisomerase I. This activity could contribute to the important transition in chromatin structure which leads to the decrease in DNA metabolism observed at the early stages of spermatid elongation.

MeSH Terms
Animals DNA, Superhelical/metabolism DNA-Binding Proteins/metabolism Gene Expression Regulation High Mobility Group Proteins/biosynthesis,isolation & purification,metabolism Humans Male Mice Mitochondrial Proteins Nuclear Proteins Phosphorylation Plasmids/metabolism Protozoan Proteins/metabolism Recombinant Proteins/isolation & purification,metabolism Spermatids/physiology Spermatocytes/metabolism Spermatogenesis Spermatogonia/metabolism Tetrahymena thermophila/metabolism Transcription Factors/metabolism Transcription, Genetic
Chemicals
DNA, Superhelical DNA-Binding Proteins High Mobility Group Proteins Mitochondrial Proteins Nuclear Proteins Protozoan Proteins Recombinant Proteins TFAM protein, human Tfam protein, mouse Transcription Factors mitochondrial transcription factor A
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Alami-Ouahabi N
Department of Biochemistry, Faculty of Medicine, University of Sherbrooke, Quebec, Canada.
Veilleux S
Meistrich M L
Boissonneault G
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Article Info
Journal
Molecular and cellular biology
Abbr.
Mol Cell Biol
ISSN
0270-7306
Published
1996-07-00
Pages
3720-9
Language
English
Region
United States
NLM ID
8109087
PMCID
PMC231368
Subset
IM
Grants
NICHD NIH HHS · HD 16843 · United States
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