Molecular and Cellular Biology Program, University of Washington, Seattle, WA 98195, USA.
Am J Hum Genet. 2010 Mar 12;86(3):389-98. doi: 10.1016/j.ajhg.2010.01.034. Epub 2010 Feb 25.
Osteogenesis imperfecta (OI) is characterized by bone fragility and fractures that may be accompanied by bone deformity, dentinogenesis imperfecta, short stature, and shortened life span. About 90% of individuals with OI have dominant mutations in the type I collagen genes COL1A1 and COL1A2. Recessive forms of OI resulting from mutations in collagen-modifying enzymes and chaperones CRTAP, LEPRE1, PPIB, and FKBP10 have recently been identified. We have identified an autosomal-recessive missense mutation (c.233T>C, p.Leu78Pro) in SERPINH1, which encodes the collagen chaperone-like protein HSP47, that leads to a severe OI phenotype. The mutation results in degradation of the endoplasmic reticulum resident HSP47 via the proteasome. Type I procollagen accumulates in the Golgi of fibroblasts from the affected individual and a population of the secreted type I procollagen is protease sensitive. These findings suggest that HSP47 monitors the integrity of the triple helix of type I procollagen at the ER/cis-Golgi boundary and, when absent, the rate of transit from the ER to the Golgi is increased and helical structure is compromised. The normal 3-hydroxylation of the prolyl residue at position 986 of the triple helical domain of proalpha1(I) chains places the role of HSP47 downstream from the CRTAP/P3H1/CyPB complex that is involved in prolyl 3-hydroxylation. Identification of this mutation in SERPINH1 gives further insight into critical steps of the collagen biosynthetic pathway and the molecular pathogenesis of OI.
成骨不全症(OI)的特征是骨骼脆弱,容易骨折,可能伴有骨骼畸形、牙本质生成不全、身材矮小和寿命缩短。大约 90%的 OI 患者的 I 型胶原基因 COL1A1 和 COL1A2 存在显性突变。最近,已经鉴定出由胶原修饰酶和伴侣蛋白 CRTAP、LEPRE1、PPIB 和 FKBP10 突变引起的 OI 隐性形式。我们在 SERPINH1 中发现了一个常染色体隐性错义突变(c.233T>C,p.Leu78Pro),该基因编码胶原伴侣样蛋白 HSP47,导致严重的 OI 表型。该突变导致内质网驻留 HSP47 通过蛋白酶体降解。受影响个体的成纤维细胞中 I 型前胶原在高尔基体内积累,并且分泌的 I 型前胶原的一部分是蛋白酶敏感的。这些发现表明 HSP47 在 ER/cis-Golgi 边界处监测 I 型前胶原三聚体的完整性,并且当不存在时,从 ER 到高尔基体的转运速度增加并且螺旋结构受损。I 型前胶原三螺旋结构域中脯氨酸残基 986 位置的正常 3-羟化作用将 HSP47 的作用置于参与脯氨酸 3-羟化作用的 CRTAP/P3H1/CyPB 复合物的下游。在 SERPINH1 中鉴定出这种突变,进一步深入了解了胶原生物合成途径的关键步骤和 OI 的分子发病机制。