Pondeville Emilie, David Jean-Philippe, Guittard Emilie, Maria Annick, Jacques Jean-Claude, Ranson Hilary, Bourgouin Catherine, Dauphin-Villemant Chantal
Biogenèse des Stéroïdes, FRE2852, CNRS-UPMC, Paris, France ; Unit of Insect Vector Genetics and Genomics, Department of Parasitology and Mycology, CNRS Unit URA3012: Hosts, Vectors and Infectious Agents, Institut Pasteur, Paris, France.
PLoS One. 2013 Dec 4;8(12):e79861. doi: 10.1371/journal.pone.0079861. eCollection 2013.
In insects, the steroid hormone 20-hydroxyecdysone (20E) coordinates major developmental transitions. While the first and the final steps of 20E biosynthesis are characterized, the pathway from 7-dehydrocholesterol to 5β-ketodiol, commonly referred as the "black box", remains hypothetical and whether there are still unidentified enzymes is unknown. The black box would include some oxidative steps, which are believed to be mediated by P450 enzymes. To identify new enzyme(s) involved in steroid synthesis, we analyzed by small-scale microarray the expression of all the genes encoding P450 enzymes of the malaria mosquito Anopheles gambiae in active steroidogenic organs of adults, ovaries from blood-fed females and male reproductive tracts, compared to inactive steroidogenic organs, ovaries from non-blood-fed females. Some genes encoding P450 enzymes were specifically overexpressed in female ovaries after a blood-meal or in male reproductive tracts but only three genes were found to be overexpressed in active steroidogenic organs of both females and males: cyp307a1, cyp4g16 and cyp6n1. Among these genes, only cyp307a1 has an expression pattern similar to other mosquito steroidogenic genes. Moreover, loss-of-function by transient RNAi targeting cyp307a1 disrupted ecdysteroid production demonstrating that this gene is required for ecdysteroid biosynthesis in Anopheles gambiae.
在昆虫中,类固醇激素20-羟基蜕皮酮(20E)协调主要的发育转变。虽然20E生物合成的第一步和最后一步已得到表征,但从7-脱氢胆固醇到5β-酮二醇的途径(通常称为“黑匣子”)仍然是假设性的,是否仍存在未鉴定的酶也尚不清楚。这个“黑匣子”可能包括一些氧化步骤,据信这些步骤由细胞色素P450酶介导。为了鉴定参与类固醇合成的新酶,我们通过小规模微阵列分析了冈比亚按蚊中所有编码细胞色素P450酶的基因在成年活性类固醇生成器官、血餐雌性的卵巢和雄性生殖道中的表达情况,并与非活性类固醇生成器官(未血餐雌性的卵巢)进行了比较。一些编码细胞色素P450酶的基因在血餐后的雌性卵巢或雄性生殖道中特异性过表达,但仅发现三个基因在雌性和雄性的活性类固醇生成器官中均过表达:cyp307a1、cyp4g16和cyp6n1。在这些基因中,只有cyp307a1的表达模式与其他蚊子类固醇生成基因相似。此外,通过瞬时RNA干扰靶向cyp307a1导致功能丧失,破坏了蜕皮甾体的产生,这表明该基因是冈比亚按蚊蜕皮甾体生物合成所必需的。