Flanagan-Steet Heather, Aarnio Megan, Kwan Brian, Guihard Pierre, Petrey Aaron, Haskins Mark, Blanchard Frederic, Steet Richard
Complex Carbohydrate Research Center, University of Georgia, Athens, GA, USA.
Inserm, UMR 957, Nantes, France.
J Bone Miner Res. 2016 Mar;31(3):535-48. doi: 10.1002/jbmr.2722. Epub 2015 Oct 13.
Hypersecretion of acid hydrolases is a hallmark feature of mucolipidosis II (MLII), a lysosomal storage disease caused by loss of carbohydrate-dependent lysosomal targeting. Inappropriate extracellular action of these hydrolases is proposed to contribute to skeletal pathogenesis, but the mechanisms that connect hydrolase activity to the onset of disease phenotypes remain poorly understood. Here we link extracellular cathepsin K activity to abnormal bone and cartilage development in MLII animals by demonstrating that it disrupts the balance of TGFß-related signaling during chondrogenesis. TGFß-like Smad2,3 signals are elevated and BMP-like Smad1,5,8 signals reduced in both feline and zebrafish MLII chondrocytes and osteoblasts, maintaining these cells in an immature state. Reducing either cathepsin K activity or expression of the transcriptional regulator Sox9a in MLII zebrafish significantly improved phenotypes. We further identify components of the large latent TGFß complex as novel targets of cathepsin K at neutral pH, providing a possible mechanism for enhanced Smad2,3 activation in vivo. These findings highlight the complexity of the skeletal disease associated with MLII and bring new insight to the role of secreted cathepsin proteases in cartilage development and growth factor regulation.
酸性水解酶分泌过多是II型粘脂贮积症(MLII)的一个标志性特征,MLII是一种溶酶体贮积病,由依赖碳水化合物的溶酶体靶向作用丧失引起。这些水解酶在细胞外的不适当作用被认为是骨骼发病机制的一个因素,但将水解酶活性与疾病表型的发生联系起来的机制仍知之甚少。在这里,我们通过证明细胞外组织蛋白酶K活性破坏软骨形成过程中TGFß相关信号的平衡,将其与MLII动物的骨骼和软骨异常发育联系起来。在猫和斑马鱼的MLII软骨细胞和成骨细胞中,TGFß样的Smad2、3信号升高,而BMP样的Smad1、5、8信号降低,使这些细胞维持在未成熟状态。降低MLII斑马鱼中的组织蛋白酶K活性或转录调节因子Sox9a的表达可显著改善表型。我们进一步确定了大的潜在TGFß复合物的成分是组织蛋白酶K在中性pH值下的新靶点,这为体内增强Smad2、3激活提供了一种可能的机制。这些发现突出了与MLII相关的骨骼疾病的复杂性,并为分泌的组织蛋白酶在软骨发育和生长因子调节中的作用带来了新的见解。