Stem cells have the potential to revolutionize tissue regeneration and engineering. Both general types of stem cells, those with pluripotent differentiation potential as well as those with multipotent differentiation potential, are of equal interest. They are important tools to further understanding of general cellular processes, to refine industrial applications for drug target discovery and predictive toxicology, and to gain more insights into their potential for tissue regeneration.
View Article and Find Full Text PDFIn this study, we investigated the expression of the mammalian FAD-dependent sulphydryl oxidase Erv1p/Alrp in the rat and mouse and during mouse spermatogenesis. Up to three forms of Alrp were identified in protein extracts from different tissues and organs, but very little enzyme was present in blood samples. The three forms of Alrp represent the full-length protein of 23 kDa and fragments of 21 kDa and 15 kDa.
View Article and Find Full Text PDFData obtained by cloning of a mouse cDNA (TAZ83) are presented. Its corresponding gene is expressed in meiotic and haploid testicular germ cells. The gene encodes a putative, cysteine-rich transmembrane protein with a deduced molecular weight of 90 kilodaltons and an isoelectric point of 5.
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