D'Amico Leonard, Scott Ian C, Jungblut Benno, Stainier Didier Y R
Department of Biochemistry and Biophysics, Cardiovascular Research Institute, University of California, San Francisco, 1550 Fourth Street, San Francisco, California 94158, USA.
Curr Biol. 2007 Feb 6;17(3):252-9. doi: 10.1016/j.cub.2006.12.023.
In vertebrates, the morphogenetic assembly of the primitive heart tube requires the medial migration and midline fusion of the bilateral myocardial epithelia. Several mutations that result in abnormal heart-tube formation have been studied; however, an understanding of the underlying molecular and cellular mechanisms of the migration and fusion of these epithelial sheets is far from complete. In a forward genetic screen to identify genes regulating early zebrafish heart development, we identified a mutation in the 3-hydroxy-3-methylglutaryl-Coenzyme A reductase 1b (hmgcr1b) gene that affects myocardial migration to the midline and subsequent heart-tube morphogenesis. The mutant phenotype can be rescued with injections of mevalonate, the direct product of HMGCR activity. Furthermore, treatment of embryos with pharmacological inhibitors of isoprenoid synthesis, which occurs downstream of mevalonate production, resulted in defective heart-tube formation. Interestingly, in hmgcr1b mutant embryos and embryos treated with HMGCR inhibitors, both RasCT20-eGFP and RhoaCT32-eGFP fusion proteins were mislocalized away from the plasma membrane in embryonic myocardial cells. We conclude that protein prenylation, acting downstream of Hmgcr1b and possibly through Ras and, or, Rho signaling, is required for the morphogenesis of the myocardial sheets for formation of the primitive heart tube.
在脊椎动物中,原始心管的形态发生组装需要双侧心肌上皮细胞向内侧迁移并在中线融合。已经研究了几种导致心管形成异常的突变;然而,对于这些上皮细胞片迁移和融合的潜在分子和细胞机制的理解还远远不够完善。在一项旨在鉴定调控斑马鱼早期心脏发育基因的正向遗传学筛选中,我们在3-羟基-3-甲基戊二酰辅酶A还原酶1b(hmgcr1b)基因中发现了一个突变,该突变影响心肌向中线的迁移以及随后的心管形态发生。用甲羟戊酸(HMGCR活性的直接产物)注射可挽救突变体表型。此外,用类异戊二烯合成的药理学抑制剂处理胚胎(类异戊二烯合成发生在甲羟戊酸产生的下游),导致心管形成缺陷。有趣的是,在hmgcr1b突变体胚胎和用HMGCR抑制剂处理的胚胎中,RasCT20-eGFP和RhoaCT32-eGFP融合蛋白在胚胎心肌细胞中均从质膜错位。我们得出结论,蛋白质异戊二烯化作用于Hmgcr1b下游,可能通过Ras和/或Rho信号传导,是心肌片形成原始心管所必需的形态发生过程。