1997
DOI: 10.1002/(sici)1097-010x(19970401)277:5<401::aid-jez6>3.0.co;2-t
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Sea urchin sperm nuclear enlargement and shape transformations are differentially regulated in vitro

Abstract: To elucidate the mechanisms regulating morphogenesis of the sperm nucleus into a male pronucleus after fertilization, we have used an in vitro cell‐free system derived from sea urchin eggs. Demembranated sperm nuclei were added to extracts prepared from either unfertilized eggs (unfertilized extract) or fertilized eggs (fertilized extract), and the area and shape of the sperm nuclei were measured using video‐intensified fluorescence microscopy coupled with image analysis. Sperm nuclei did not decondense in buf… Show more

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Cited by 4 publications
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“…In sea urchins, it was shown that the initial changes in shape concomitant to male pronucleus formation in vitro can be blocked by inhibitors of serine-proteases, whereas the expansion of the sperm nucleus seems to be unaffected. Therefore, it was suggested that the activity of serine-proteases is required for the changes in sperm nuclear matrix that govern the transformations in the shape of the sperm nuclei (Raskin et al, 1997).…”
Section: Role Of Proteolysis In Chromatin Remodeling Of the Male Pronmentioning
confidence: 99%
“…In sea urchins, it was shown that the initial changes in shape concomitant to male pronucleus formation in vitro can be blocked by inhibitors of serine-proteases, whereas the expansion of the sperm nucleus seems to be unaffected. Therefore, it was suggested that the activity of serine-proteases is required for the changes in sperm nuclear matrix that govern the transformations in the shape of the sperm nuclei (Raskin et al, 1997).…”
Section: Role Of Proteolysis In Chromatin Remodeling Of the Male Pronmentioning
confidence: 99%