Bewley G C, Lucchesi J C
Biochem Genet. 1977 Apr;15(3-4):235-51. doi: 10.1007/BF00484456.
The basis for the differentiation of L-glycerol-3-phosphate dehydrogenase (alpha-GPDH) into larval and adult isozymes in Drosophila melanogaster was investigated by the correlation of a lack of appearance of each isozyme during development within Drosophila bearing alpha-GPDH "null" alleles and by the study of a putative conversion factor. Conversion studies indicate the presence of a heat-labile RNase-resistant conversion factor present in crude larval extracts with the ability to convert GPDH-1 to GPDH-2 and GPDH-3 but not vice versa. In addition, "null" mutations at the Gpdh locus obliterate all isozymatic species of alpha-GPDH in all developmental stages. These observations suggest that all alpha-GPDH isozymes are the product of a single structural gene and that the multiple forms of this enzyme arise during successive developmental stages through an epigenetic modification of the primary Gpdh+ polypeptide. Finally, observations are reported which bear on the functional divergence of the alpha-glycerophosphate cycle in the adult and larval stage of development.
通过研究携带α - 甘油磷酸脱氢酶(α - GPDH)“无效”等位基因的果蝇在发育过程中各同工酶未出现的相关性,以及对一种假定的转化因子的研究,探讨了黑腹果蝇中L - 甘油 - 3 - 磷酸脱氢酶(α - GPDH)分化为幼虫和成虫同工酶的基础。转化研究表明,粗制幼虫提取物中存在一种热不稳定的、抗核糖核酸酶的转化因子,它能够将GPDH - 1转化为GPDH - 2和GPDH - 3,但反之则不行。此外,Gpdh基因座的“无效”突变消除了所有发育阶段α - GPDH的所有同工酶种类。这些观察结果表明,所有α - GPDH同工酶都是单个结构基因的产物,并且这种酶的多种形式是在连续发育阶段通过初级Gpdh +多肽的表观遗传修饰产生的。最后,报告了与发育的成虫和幼虫阶段α - 甘油磷酸循环功能差异相关的观察结果。