Reaume A G, Knecht D A, Chovnick A
Department of Molecular and Cell Biology, University of Connecticut, Storrs 06269-2131.
Genetics. 1991 Dec;129(4):1099-109. doi: 10.1093/genetics/129.4.1099.
The rosy gene in Drosophila melanogaster codes for the enzyme xanthine dehydrogenase (XDH). Mutants that have no enzyme activity are characterized by a brownish eye color phenotype reflecting a deficiency in the red eye pigment. Xanthine dehydrogenase is not synthesized in the eye, but rather is transported there. The present report describes the ultrastructural localization of XDH in the Drosophila eye. Three lines of evidence are presented demonstrating that XDH is sequestered within specific vacuoles, the type II pigment granules. Histochemical and antibody staining of frozen sections, as well as thin layer chromatography studies of several adult genotypes serve to examine some of the factors and genic interactions that may be involved in transport of XDH, and in eye pigment formation. While a specific function for XDH in the synthesis of the red, pteridine eye pigments remains unknown, these studies present evidence that: (1) the incorporation of XDH into the pigment granules requires specific interaction between a normal XDH molecule and one or more transport proteins; (2) the structural integrity of the pigment granule itself is dependent upon the presence of a normal balance of eye pigments, a notion advanced earlier.
果蝇中的玫瑰色基因编码黄嘌呤脱氢酶(XDH)。没有酶活性的突变体具有褐色眼的表型特征,这反映了红眼色素的缺乏。黄嘌呤脱氢酶不是在眼中合成的,而是被运输到那里。本报告描述了XDH在果蝇眼中的超微结构定位。提供了三条证据表明XDH被隔离在特定的液泡中,即II型色素颗粒。对冰冻切片进行组织化学和抗体染色,以及对几种成年基因型进行薄层色谱研究,有助于研究可能参与XDH运输和眼色素形成的一些因素和基因相互作用。虽然XDH在红色蝶啶眼色素合成中的具体功能尚不清楚,但这些研究提供了证据表明:(1)将XDH纳入色素颗粒需要正常的XDH分子与一种或多种转运蛋白之间的特定相互作用;(2)色素颗粒本身的结构完整性取决于眼色素正常平衡的存在,这一观点早有提出。