首页> 美国卫生研究院文献>Biochemical Journal >Structural and functional differences among human surfactant proteins SP-A1 SP-A2 and co-expressed SP-A1/SP-A2: role of supratrimeric oligomerization
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Structural and functional differences among human surfactant proteins SP-A1 SP-A2 and co-expressed SP-A1/SP-A2: role of supratrimeric oligomerization

机译:人表面活性剂蛋白SP-A1SP-A2和共表达的SP-A1 / SP-A2之间的结构和功能差异:超三聚体低聚作用

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摘要

SP-A (surfactant protein A) is a membrane-associated SP that helps to maintain the lung in a sterile and non-inflamed state. Unlike SP-As from other mammalian species, human SP-A consists of two functional gene products: SP-A1 and SP-A2. In all the functions examined, recombinant human SP-A1 invariably exhibits lower biological activity than SP-A2. The objective of the present study was to investigate why SP-A2 possesses greater biological activity than SP-A1 and what advantage accrues to having two polypeptide chains instead of one. We analysed structural and functional characteristics of recombinant baculovirus-derived SP-A1, SP-A2 and co-expressed SP-A1/SP-A2 using a wide array of experimental approaches such as analytical ultracentrifugation, DSC (differential scanning calorimetry) and fluorescence. We found that the extent of supratrimeric assembly is much lower in SP-A1 than SP-A2. However, the resistance to proteolysis is greater for SP-A1 than for SP-A2. Co-expressed SP-A1/SP-A2 had greater thermal stability than SP-A1 and SP-A2 and exhibited properties of each protein. On the one hand, SP-A1/SP-A2, like SP-A2, had a higher degree of oligomerization than SP-A1, and consequently had lower Kd for binding to bacterial Re-LPS (rough lipopolysaccharide), higher self-association in the presence of calcium and greater capability to aggregate Re-LPS and phospholipids than SP-A1. On the other hand, SP-A1/SP-A2, like SP-A1, was more resistant to trypsin degradation than SP-A2. Finally, the importance of the supratrimeric assembly for SP-A immunomodulatory function is discussed.
机译:SP-A(表面活性蛋白A)是一种与膜相关的SP,有助于将肺维持在无菌和非发炎状态。与其他哺乳动物的SP-A不同,人SP-A由两个功能基因产物组成:SP-A1和SP-A2。在所有检查的功能中,重组人SP-A1始终表现出比SP-A2低的生物学活性。本研究的目的是研究为什么SP-A2具有比SP-A1更大的生物学活性,以及​​具有两条多肽链而不是一条多肽链具有什么优势。我们使用分析超离心,DSC(差示扫描量热法)和荧光等多种实验方法分析了重组杆状病毒衍生的SP-A1,SP-A2和共表达的SP-A1 / SP-A2的结构和功能特性。我们发现,SP-A1中超三聚体组装的程度比SP-A2低得多。但是,SP-A1对蛋白水解的抵抗力要大于SP-A2。共表达的SP-A1 / SP-A2具有比SP-A1和SP-A2更高的热稳定性,并表现出每种蛋白质的特性。一方面,与SP-A2一样,SP-A1 / SP-A2的寡聚度更高,因此与细菌Re-LPS(粗糙的脂多糖)结合的Kd较低,自缔合性更高。钙存在下,Re-LPS和磷脂的聚集能力比SP-A1高。另一方面,与SP-A1一样,SP-A1 / SP-A2比SP-A2更耐胰蛋白酶降解。最后,讨论了超三聚体组装对于SP-A免疫调节功能的重要性。

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