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没有 Gly-X-Y 重复序列中断的表面活性蛋白 A 失去了寡聚结构的一个扭结,并表现出受损的磷脂脂质体聚集能力。

Surfactant protein A without the interruption of Gly-X-Y repeats loses a kink of oligomeric structure and exhibits impaired phospholipid liposome aggregation ability.

作者信息

Uemura Tatsuki, Sano Hitomi, Katoh Tsuyoshi, Nishitani Chiaki, Mitsuzawa Hiroaki, Shimizu Takeyuki, Kuroki Yoshio

机构信息

Department of Biochemistry, Sapporo Medical University School of Medicine, Sapporo 060-8556, Japan.

出版信息

Biochemistry. 2006 Dec 5;45(48):14543-51. doi: 10.1021/bi061338u.

Abstract

Pulmonary surfactant protein A (SP-A) belongs to the collectin subgroup of the C-type lectin superfamily. SP-A oligomerizes as an octadecamer, which forms a flower bouquet-like structure. A collagen-like domain of human SP-A consists of 23 Gly-X-Y repeats with an interruption near the midpoint of this domain. This interruption causes a kink, but its role remains unknown. To define the importance of the kink region of SP-A, two mutated proteins were constructed to disrupt the interruption of Gly-X-Y repeats: SP-ADEL, which lacks the Pro47-Cys48-Pro49-Pro50 sequence at the interruption, and SP-AINS, in which two glycines were introduced to insert Gly-X-Y repeats (Gly-Pro47-Cys48-Gly-Pro49-Pro50). Electron microscopy using rotary shadowing revealed that both mutants form octadecamers that lack a bend in the collagenous domain. Electrophoretic analysis under nondenaturing conditions and gel filtration chromatography demonstrated that SP-AINS consisted of a large assembly of oligomers whereas SP-ADEL formed mainly octadecamers. Both SP-ADEL and SP-AINS mutants as well as wild-type SP-A bound to liposomes containing dipalmitoylphosphatidylcholine and galactosylceramide at equivalent levels, but the abilities of the mutants to induce phospholipid liposome aggregation were significantly less developed than that of the wild type. The mutants SP-ADEL and SP-AINS augmented liposome uptake by alveolar type II cells and inhibited secretion of phospholipids from type II cells at a level comparable to that of wild-type SP-A. These results indicate that the interruption of Gly-X-Y repeats in the SP-A molecule is critical for the formation of a flower bouquet-like octadecamer and contributes to SP-A's capacity to aggregate phospholipid liposomes.

摘要

肺表面活性蛋白A(SP-A)属于C型凝集素超家族的collectin亚组。SP-A以十八聚体形式寡聚化,形成花束状结构。人SP-A的胶原样结构域由23个Gly-X-Y重复序列组成,在该结构域中点附近有一个中断。这种中断会导致一个扭结,但其作用尚不清楚。为了确定SP-A扭结区域的重要性,构建了两种突变蛋白以破坏Gly-X-Y重复序列的中断:SP-ADEL,其在中断处缺少Pro47-Cys48-Pro49-Pro50序列;以及SP-AINS,其中引入了两个甘氨酸以插入Gly-X-Y重复序列(Gly-Pro47-Cys48-Gly-Pro49-Pro50)。使用旋转阴影的电子显微镜显示,两种突变体均形成在胶原结构域中没有弯曲的十八聚体。非变性条件下的电泳分析和凝胶过滤色谱表明,SP-AINS由大量寡聚体组装而成,而SP-ADEL主要形成十八聚体。SP-ADEL和SP-AINS突变体以及野生型SP-A与含有二棕榈酰磷脂酰胆碱和半乳糖神经酰胺的脂质体的结合水平相当,但突变体诱导磷脂脂质体聚集的能力明显低于野生型。突变体SP-ADEL和SP-AINS增强了肺泡II型细胞对脂质体的摄取,并在与野生型SP-A相当的水平上抑制了II型细胞中磷脂的分泌。这些结果表明,SP-A分子中Gly-X-Y重复序列的中断对于花束状十八聚体的形成至关重要,并有助于SP-A聚集磷脂脂质体的能力。

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