Smith Stuart J, Towers Norma, Saldanha José W, Shang Catherine A, Mahmood S Radma, Taylor William R, Mohun Timothy J
Heart Formation in Vertebrates Laboratory, The Francis Crick Institute - Mill Hill Laboratory, The Ridgeway, Mill Hill, London NW7 1AA, UK.
Mathematical Biology Laboratory, The Francis Crick Institute - Mill Hill Laboratory, The Ridgeway, Mill Hill, London NW7 1AA, UK.
Dev Biol. 2016 Aug 15;416(2):373-88. doi: 10.1016/j.ydbio.2016.05.006. Epub 2016 May 20.
Adprhl1, a member of the ADP-ribosylhydrolase protein family, is expressed exclusively in the developing heart of all vertebrates. In the amphibian Xenopus laevis, distribution of its mRNA is biased towards actively growing chamber myocardium. Morpholino oligonucleotide-mediated knockdown of all Adprhl1 variants inhibits striated myofibril assembly and prevents outgrowth of the ventricle. The resulting ventricles retain normal electrical conduction and express markers of chamber muscle differentiation but are functionally inert. Using a cardiac-specific Gal4 binary expression system, we show that the abundance of Adprhl1 protein in tadpole hearts is tightly controlled through a negative regulatory mechanism targeting the 5'-coding sequence of Xenopus adprhl1. Over-expression of full length (40kDa) Adprhl1 variants modified to escape such repression, also disrupts cardiac myofibrillogenesis. Disarrayed myofibrils persist that show extensive branching, with sarcomere division occurring at the actin-Z-disc boundary. Ultimately, Adprhl1-positive cells contain thin actin threads, connected to numerous circular branch points. Recombinant Adprhl1 can localize to stripes adjacent to the Z-disc, suggesting a direct role for Adprhl1 in modifying Z-disc and actin dynamics as heart chambers grow. Modelling the structure of Adprhl1 suggests this cardiac-specific protein is a pseudoenzyme, lacking key residues necessary for ADP-ribosylhydrolase catalytic activity.
Adprhl1是ADP核糖水解酶蛋白家族的成员之一,仅在所有脊椎动物发育中的心脏中表达。在两栖动物非洲爪蟾中,其mRNA的分布偏向于活跃生长的心室心肌。吗啉代寡核苷酸介导的所有Adprhl1变体的敲低会抑制横纹肌肌原纤维组装,并阻止心室生长。所产生的心室保留正常的电传导,并表达心室肌分化标志物,但功能上无活性。使用心脏特异性Gal4二元表达系统,我们发现蝌蚪心脏中Adprhl1蛋白的丰度通过针对非洲爪蟾adprhl1 5'编码序列的负调控机制受到严格控制。经修饰以逃避这种抑制的全长(40kDa)Adprhl1变体的过表达也会破坏心肌原纤维形成。紊乱的肌原纤维持续存在,表现出广泛的分支,肌节分裂发生在肌动蛋白-Z盘边界。最终,Adprhl1阳性细胞含有细肌动蛋白丝,连接到许多圆形分支点。重组Adprhl1可定位于与Z盘相邻的条纹,表明Adprhl1在心室生长时修饰Z盘和肌动蛋白动力学中起直接作用。对Adprhl1结构的建模表明,这种心脏特异性蛋白是一种假酶,缺乏ADP核糖水解酶催化活性所需的关键残基。