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R A Cardullo

Publications and source records attributed to R A Cardullo.

20 records · Page 2Linked to original sources

Fucosylation events during mammalian spermatogenesis.

It will be necessary to conduct further studies to establish more precisely the localization of FT on mouse male germ cells. Antibodies to FTs are not yet available, so an immunocytochemical approach is not currently feasible. Additional cell fractionation protocols can be designed to compare plasma membrane fractions with enriched fractions of Golgi apparatus and to compare directly the activities of multiple glycosyltransferase enzymes and Golgi-specific markers in these preparations. Schachter et al. and Nyquist and colleagues have already provided experimental techniques for the isolation of Golgi fractions of good purity from rodent pachytene spermatocytes and spermatids. Ample opportunity exists, then, for a detailed analysis of the number, specificity, and localization of FT enzymes during mammalian spermatogenesis. All available data imply that these enzymes will prove to be vital components in the differentiation of cells within the seminiferous epithelium.

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Mechanical immobilization of rat sperm does not change their oxygen consumption rate.

Rat sperm are mechanically immobilized by the mucin immobilin during storage in the cauda epididymidis. We thought this mechanical immobilization might lower the respiration rate of caudal sperm since it is well established that both the respiration rate and adenosine triphosphate (ATP) dephosphorylation rate of certain invertebrate sperm are markedly reduced when they are mechanically immobilized. To measure the oxygen consumption rates of rat sperm, we used a conventional polarographic oxygen sensor. However, we used an unstirred sample chamber since we found that sperm are unusually fragile and are quickly killed by even moderate stirring. When caudal sperm were diluted in physiological salt solutions, they became vigorously motile and consumed oxygen at a rate of approximately 20 microliter O2/10(8) sperm/hour at 34.5 degrees C for dilutions between 20- and 200-fold. In confirmation of the work of Brokaw et al., we found that when the motility of sea urchin sperm was reduced progressively with increasing amounts of methylcellulose, the sperm consumed oxygen at a markedly reduced rate. In contrast, we found that when caudal rat sperm were mechanically immobilized, either by methylcellulose or by immobilin, their oxygen consumption rate did not differ detectably from that of vigorously motile sperm. Thus, the coupling of metabolism to motility differs significantly between these two types of sperm. We conclude that immobilin does not change the respiration rate of caudal rat sperm.

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