Tsunezawa W, Sano H, Sohma H, McCormack F X, Voelker D R, Kuroki Y
Department of Biochemistry, Sapporo Medical University School of Medicine, South-1 West-17, Chuo-ku, Sapporo 060, Japan.
Biochim Biophys Acta. 1998 Sep 8;1387(1-2):433-46. doi: 10.1016/s0167-4838(98)00159-9.
Surfactant protein A (SP-A) binds to dipalmitoylphosphatidylcholine (DPPC) and induces phospholipid vesicle aggregation. It also regulates the uptake and secretion of surfactant lipids by alveolar type II cells. We introduced the single mutations Glu195-->Gln (rE195Q), Lys201-->Ala (rK201A) and Lys203-->Ala (rK203A) for rat SP-A, Arg199-->Ala (hR199A) and Lys201-->Ala (hK201A) for human SP-A, and the triple mutations Arg197, Lys201 and Lys203-->Ala (rR197A/K201A/K203A) for rat SP-A, into cDNAs for SP-A, and expressed the recombinant proteins using baculovirus vectors. All recombinant proteins avidly bound to DPPC liposomes. rE195Q, rK201A, rK203A, hR199A and hK201A function with activity comparable to wild type SP-A. Although rR197A/K201A/K203A was a potent inducer of phospholipid vesicle aggregation, it failed to stimulate lipid uptake. rR197A/K201A/K203A was a weak inhibitor for lipid secretion and did not competed with rat [125I]SP-A for receptor occupancy. From these results, we conclude that Lys201 and Lys203 of rat SP-A, and Arg199 and Lys201 of human SP-A are not individually critical for the interaction with lipids and type II cells, and that Glu195 of rat SP-A can be replaced with Gln without loss of SP-A functions. This study also demonstrates that the SP-A-mediated lipid uptake is not directly correlated with phospholipid vesicle aggregation, and that specific interactions of SP-A with type II cells are involved in the lipid uptake process.
表面活性蛋白A(SP-A)与二棕榈酰磷脂酰胆碱(DPPC)结合并诱导磷脂囊泡聚集。它还调节II型肺泡细胞对表面活性脂质的摄取和分泌。我们将大鼠SP-A的单突变Glu195→Gln(rE195Q)、Lys201→Ala(rK201A)和Lys203→Ala(rK203A),人SP-A的Arg199→Ala(hR199A)和Lys201→Ala(hK201A),以及大鼠SP-A的三突变Arg197、Lys201和Lys203→Ala(rR197A/K201A/K203A)引入SP-A的cDNA中,并使用杆状病毒载体表达重组蛋白。所有重组蛋白都能与DPPC脂质体紧密结合。rE195Q、rK201A、rK203A、hR199A和hK201A的功能活性与野生型SP-A相当。尽管rR197A/K201A/K203A是磷脂囊泡聚集的有效诱导剂,但它未能刺激脂质摄取。rR197A/K201A/K203A是脂质分泌的弱抑制剂,并且不与大鼠[125I]SP-A竞争受体占据。从这些结果,我们得出结论,大鼠SP-A的Lys201和Lys203,以及人SP-A的Arg199和Lys201对于与脂质和II型细胞的相互作用并非个别关键,并且大鼠SP-A的Glu195可以被Gln替代而不丧失SP-A功能。这项研究还表明,SP-A介导的脂质摄取与磷脂囊泡聚集没有直接相关性,并且SP-A与II型细胞的特异性相互作用参与了脂质摄取过程。