Whiteman Pat, Willis Antony C, Warner Andrew, Brown James, Redfield Christina, Handford Penny A
Department of Biochemistry, University of Oxford, South Parks Road, Oxford OX1 3QU, UK.
Hum Mol Genet. 2007 Apr 15;16(8):907-18. doi: 10.1093/hmg/ddm035. Epub 2007 Feb 26.
Human fibrillin-1 is an extra-cellular matrix glycoprotein with a modular organisation that includes 43 calcium-binding epidermal growth factor-like (cbEGF) domains arranged as multiple tandem repeats interspersed with transforming growth factor beta binding protein-like (TB) domains. We have studied Marfan syndrome-causing mutations which affect calcium binding to cbEGF13, and demonstrate that in human fibroblast cells they cause unexpected endoplasmic reticulum retention, indicative of a folding defect. Biochemical and biophysical studies of in vitro refolded fragments from the TB3-cbEGF14 region indicate long-range and unidirectional effects of these substitutions on the adjacent N-terminal domain cbEGF12. In contrast, only short-range effects of a pathogenic mutation affecting calcium binding to cbEGF19 are observed, and secretion of this mutant protein occurs. Further NMR studies on wild-type cbEGF12-13 and cbEGF12-14 identify a co-operative dependence of domain folding where calcium binding to cbEGF13 is required before cbEGF12 can adopt a native Ca(2+)-dependent fold. These data demonstrate that during biosynthesis of fibrillin-1, multiple tandem repeats of cbEGF domains may not necessarily fold independently and therefore missense mutations resulting in identical substitutions may have different effects on the fate of the mutant protein. Complex folding of modular proteins should therefore be considered when interpreting the molecular pathology of single-gene disorders.
人原纤蛋白-1是一种细胞外基质糖蛋白,具有模块化结构,包括43个钙结合表皮生长因子样(cbEGF)结构域,这些结构域排列成多个串联重复序列,中间穿插着转化生长因子β结合蛋白样(TB)结构域。我们研究了导致马凡综合征的突变,这些突变影响钙与cbEGF13的结合,并证明在人成纤维细胞中,它们会导致意想不到的内质网滞留,这表明存在折叠缺陷。对来自TB3-cbEGF14区域的体外重折叠片段的生化和生物物理研究表明,这些取代对相邻的N端结构域cbEGF12有长程和单向影响。相比之下,仅观察到影响钙与cbEGF19结合的致病突变的短程效应,并且该突变蛋白会分泌。对野生型cbEGF12-13和cbEGF12-14的进一步核磁共振研究确定了结构域折叠的协同依赖性,即cbEGF12在采用天然的Ca(2+)依赖性折叠之前,需要钙与cbEGF13结合。这些数据表明,在原纤蛋白-1的生物合成过程中,cbEGF结构域的多个串联重复序列不一定独立折叠,因此导致相同取代的错义突变可能对突变蛋白的命运产生不同影响。因此,在解释单基因疾病的分子病理学现象时,应考虑模块化蛋白质的复杂折叠情况。