Martinez-Ceballos E, Burdsal C A
Department of Cell and Molecular Biology, Tulane University, New Orleans, LA 70118, USA.
J Exp Zool. 2001 Jul 1;290(2):136-47. doi: 10.1002/jez.1043.
Multiple studies indicate that quantitative control of the levels of all-trans-retinoic acid (RA) in the vertebrate embryo is necessary for correct development. The function of RA in cells is regulated by a number of coordinated mechanisms. One of those mechanisms involves controls on the rate of RA catabolism. Recently, enzymes capable of catabolizing RA were found to constitute a new family, called CYP26, within the cytochrome P450 superfamily. CYP26 homologues have been isolated from human, mouse, zebra fish, and recently from the chick. In this study, we examined the regulation of chicken CYP26 (cCYP26) expression by RA during the early phase of chick limb outgrowth. In the anterior limb mesenchyme and apical ectodermal ridge (AER), cCYP26 expression was induced in a concentration dependent manner by implanting beads soaked in 0.1, 1, and 5 mg/ml RA. The RA-induced expression of cCYP26 in anterior limb mesenchyme and the AER was detected as early as 1 hr after treatment and was not affected by the presence of cycloheximide. In contrast to the anterior limb, the induction of cCYP26 was dramatically reduced (or absent) when RA beads were implanted in the posterior limb mesenchyme. Furthermore, induction of cCYP26 expression in the anterior mesenchyme was inhibited by transplantations of the zone of polarizing activity (ZPA) and by Shh-soaked beads. Our data suggest that different mechanisms regulate retinoid homeostasis in the AER and mesenchyme during limb bud outgrowth. J. Exp. Zool. 290:136-147, 2001.
多项研究表明,对脊椎动物胚胎中全反式维甲酸(RA)水平进行定量控制对正常发育是必要的。RA在细胞中的功能受多种协调机制调控。其中一种机制涉及对RA分解代谢速率的控制。最近发现,能够分解代谢RA的酶在细胞色素P450超家族中构成一个名为CYP26的新家族。CYP26同源物已从人、小鼠、斑马鱼中分离出来,最近还从鸡中分离得到。在本研究中,我们检测了鸡胚肢芽长出早期RA对鸡CYP26(cCYP26)表达的调控。在前肢间充质和顶端外胚层嵴(AER)中,通过植入浸泡在0.1、1和5 mg/ml RA中的珠子,以浓度依赖的方式诱导cCYP26表达。处理后1小时即可检测到RA诱导的前肢间充质和AER中cCYP26的表达,且不受放线菌酮的影响。与前肢相反,当将RA珠子植入后肢间充质时,cCYP26的诱导显著降低(或不存在)。此外,极化活性区(ZPA)移植和浸泡Shh的珠子可抑制前间充质中cCYP26表达的诱导。我们的数据表明,在肢芽长出过程中,不同机制调控AER和间充质中的视黄酸稳态。《实验动物学杂志》290:136 - 147,2001年。