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前表面活性蛋白C含Brichos结构域的C末端部分与未折叠的多价跨膜片段结合。

The Brichos domain-containing C-terminal part of pro-surfactant protein C binds to an unfolded poly-val transmembrane segment.

作者信息

Johansson Hanna, Nordling Kerstin, Weaver Timothy E, Johansson Jan

机构信息

Department of Molecular Biosciences, Swedish University of Agricultural Sciences, The Biomedical Centre, S-751 23 Uppsala, Sweden.

Division of Pulmonary Biology, Cincinnati Children's Research Foundation, Cincinnati, Ohio 45229-3039.

出版信息

J Biol Chem. 2006 Jul 28;281(30):21032-21039. doi: 10.1074/jbc.M603001200. Epub 2006 May 18.

DOI:10.1074/jbc.M603001200
PMID:16709565
Abstract

Native lung surfactant protein C (SP-C) is a 4.2-kDa acylpeptide that associates with alveolar surfactant phospholipids via a transmembrane alpha-helix. This helix contains mainly Val, although poly-Val is inefficient in helix formation, and helical SP-C can spontaneously convert to beta-sheet aggregates and amyloid-like fibrils. SP-C is cleaved out from a 21-kDa integral membrane protein, proSP-C, in the alveolar type II cell. Recently several mutations localized in the endoplasmic reticulum-lumenal (C-terminal) part of proSP-C (CTproSP-C) have been associated with intracellular accumulation of toxic forms of proSP-C, low levels of mature SP-C, and development of interstitial lung disease. CTproSP-C contains a approximately 100-residue Brichos domain of unknown function that is also found in other membrane proteins associated with amyloid formation, dementia, and cancer. Here we find that recombinant CTproSP-C binds lipid-associated SP-C, which is in beta-strand conformation, and that this interaction results in an increased helical content. In contrast, CTproSP-C does not bind alpha-helical SP-C. Recombinant CTproSP-C(L188Q), a mutation associated with interstitial lung disease, shows secondary and quaternary structures similar to those of wild type CTproSP-C but is unable to bind lipid-associated beta-strand SP-C. Transfection of CTproSP-C into HEK293 cells that express proSP-C(L188Q) increases the amount of proSP-C protein, whereas no effect is seen on cells expressing wild type proSP-C. These findings suggest that CTproSP-C binds nonhelical SP-C and thereby prevents beta-sheet aggregation and that mutations in CTproSP-C can interfere with this function.

摘要

天然肺表面活性蛋白C(SP-C)是一种4.2 kDa的酰基肽,通过跨膜α-螺旋与肺泡表面活性磷脂结合。该螺旋主要包含缬氨酸,尽管多聚缬氨酸在螺旋形成中效率不高,并且螺旋状的SP-C可自发转化为β-折叠聚集体和淀粉样纤维。SP-C在肺泡II型细胞中从21 kDa的整合膜蛋白前体SP-C(proSP-C)中切割出来。最近,位于proSP-C内质网腔(C末端)部分的几种突变与proSP-C毒性形式的细胞内积累、成熟SP-C水平低以及间质性肺病的发展有关。CTproSP-C包含一个约100个残基的功能未知的Brichos结构域,该结构域也存在于其他与淀粉样蛋白形成、痴呆和癌症相关的膜蛋白中。在这里,我们发现重组CTproSP-C与处于β-链构象的脂质相关SP-C结合,并且这种相互作用导致螺旋含量增加。相比之下,CTproSP-C不结合α-螺旋SP-C。与间质性肺病相关的重组CTproSP-C(L188Q)显示出与野生型CTproSP-C相似的二级和四级结构,但无法结合脂质相关的β-链SP-C。将CTproSP-C转染到表达proSP-C(L188Q)的HEK293细胞中会增加proSP-C蛋白的量,而对表达野生型proSP-C的细胞没有影响。这些发现表明,CTproSP-C结合非螺旋状的SP-C,从而防止β-折叠聚集,并且CTproSP-C中的突变会干扰该功能。

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