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ANALYSIS OF THE CDNA AND ENCODED PROTEIN OF THE HUMAN TESTIS-SPECIFIC PGK-2 GENE

机译:人类睾丸特异性PGK-2基因CDNA和编码蛋白的分析

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摘要

Because of their unique function, germ cells require unique gene products. Thus, although the glycolytic enzyme phosphoglycerate kinase (PGK) is required in all metabolically active cell types, there are two functional PGK genes in the mammalian genome, one, PGK-1, that is X-linked and ubiquitously expressed in all somatic tissues, and a second, PGK-2, that is autosomal and expressed only in spermatogenic cells. Expression of the PGK-2 gene may function solely to compensate for repressed expression of the PGK-1 gene due to X-chromosome inactivation in spermatocytes. Alternatively, the PGK-2 gene could encode an isozyme with unique characteristics that are beneficial to spermatozoa. We have isolated a cDNA of the human PGK-2 gene and used this as probe to demonstrate that transcription of this gene in spermatocytes and spermatids coincides with a period of repressed transcription of the X-linked PGK-I gene during spermatogenesis in the human testis. We have also analyzed the amino acid sequence and protein characteristics of the PGK-2 isozyme deduced from this cDNA and compared them with that of the human PGK-1 isozyme to show that known structural and functional motifs are conserved in both proteins. Finally, we have examined the distribution of the PGK-1 and PGK-2 isozymes during spermatogenesis in the mouse to show that while the PGK-2 protein does not appear to possess any unique intracellular localization signal, it is more stable in vivo than the PGK-1 protein.
机译:由于其独特的功能,生殖细胞需要独特的基因产物。因此,尽管在所有具有代谢活性的细胞类型中都需要糖酵解磷酸甘油酸激酶(PGK),但哺乳动物基因组中有两个功能性PGK基因,一个是PGK-1,它与X连锁并在所有体细胞组织中普遍表达,第二种是PGK-2,它是常染色体的,仅在生精细胞中表达。 PGK-2基因的表达可能仅起到补偿由于精细胞中X染色体失活而导致PGK-1基因表达受阻的作用。或者,PGK-2基因可以编码具有对精子有益的独特特征的同工酶。我们已经分离出人PGK-2基因的cDNA,并用它作为探针来证明该基因在精母细胞和精子中的转录与人类睾丸生精过程中X-连锁PGK-1基因的转录受抑制的时期相吻合。 。我们还分析了从该cDNA推导出的PGK-2同工酶的氨基酸序列和蛋白质特征,并将其与人PGK-1同工酶的氨基酸序列和蛋白质特征进行比较,以显示已知的结构和功能基序在这两种蛋白中均保守。最后,我们检查了小鼠精子发生过程中PGK-1和PGK-2同工酶的分布,以表明PGK-2蛋白似乎没有任何独特的细胞内定位信号,但在体内比在体内更稳定。 PGK-1蛋白。

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