Department of Regenerative Medicine and Cell Biology, 171 Ashley Avenue, Medical University of South Carolina, Charleston, SC 29425, USA.
Matrix Biol. 2010 May;29(4):304-16. doi: 10.1016/j.matbio.2010.01.005. Epub 2010 Jan 22.
Here, we demonstrate that ADAMTS9, a highly conserved versican-degrading protease, is required for correct cardiovascular development and adult homeostasis. Analysis of Adamts9(+/LacZ) adult mice revealed anomalies in the aortic wall, valvulosinus and valve leaflets. Abnormal myocardial projections and 'spongy' myocardium consistent with non-compaction of the left ventricle were also found in Adamts9(+/LacZ) mice. During development, Adamts9 was expressed in derivatives of the Secondary Heart Field, vascular smooth muscle cells in the arterial wall, mesenchymal cells of the valves, and non-myocardial cells of the ventricles, but expression also continued in the adult heart and ascending aorta. Thus, the adult cardiovascular anomalies found in Adamts9(+/LacZ) hearts could result from subtle developmental alterations in extracellular matrix remodeling or defects in adult homeostasis. The valvular and aortic anomalies of Adamts9(+/LacZ) hearts were associated with accumulation of versican and a decrease in cleaved versican relative to WT littermates. These data suggest a potentially important role for ADAMTS9 cleavage of versican, or other, as yet undefined substrates in development and allostasis of cardiovascular extracellular matrix. In addition, these studies identify ADAMTS9 as a potential candidate gene for congenital cardiac anomalies. Mouse models of ADAMTS9 deficiency may be useful to study myxomatous valve degeneration.
在这里,我们证明了 ADAMTS9,一种高度保守的 versican 降解蛋白酶,对于心血管的正常发育和成年后的稳态维持是必需的。对 Adamts9(+/LacZ)成年小鼠的分析显示,其主动脉壁、窦房结和瓣叶存在异常。在 Adamts9(+/LacZ)小鼠中还发现了心肌突起异常和左心室非致密化的“海绵样”心肌。在发育过程中,Adamts9 在次级心脏场的衍生物、动脉壁中的血管平滑肌细胞、瓣膜的间质细胞以及心室的非心肌细胞中表达,但在成年心脏和升主动脉中也持续表达。因此,Adamts9(+/LacZ)心脏中发现的成年心血管异常可能是由于细胞外基质重塑的微小发育改变或成年稳态的缺陷所致。Adamts9(+/LacZ)心脏的瓣膜和主动脉异常与 versican 的积累有关,与 WT 同窝仔鼠相比,裂解的 versican 减少。这些数据表明 ADAMTS9 对 versican 或其他尚未定义的底物的裂解在心血管细胞外基质的发育和稳态维持中具有潜在的重要作用。此外,这些研究表明 ADAMTS9 是先天性心脏异常的潜在候选基因。ADAMTS9 缺乏的小鼠模型可能有助于研究黏液样瓣膜变性。