Sohma H, Creutz C E, Saitoh M, Sano H, Kuroki Y, Voelker D R, Akino T
Department of Biochemistry, Sapporo Medical University School of Medicine, South-1, West-17, Chuo-ku, Sapporo, 060-8556 Japan.
Biochem J. 1999 Jul 1;341 ( Pt 1)(Pt 1):203-9.
We have shown previously that surfactant protein A (SP-A) binds to annexin IV in a Ca2+-dependent manner [Sohma, Matsushima, Watanabe, Hattori, Kuroki and Akino (1995) Biochem. J. 312, 175-181]. Annexin IV is a member of the annexin family having four consensus repeats of about 70 amino acids and a unique N-terminal tail. In the present study, the functional site of both annexin IV and SP-A for the Ca2+-dependent binding was investigated using mutant proteins. SP-A bound in a Ca2+-dependent manner to an annexin-IV truncation mutant consisting of the N-terminal domain and the first three domains (T(N-1-2-3)). SP-A also bound to T3-4, but this interaction was not Ca2+-dependent. SP-A bound weakly to the other truncation mutants (T(N-1-2), T(2-3) and T(2-3-4)). Each consensus repeat of annexin IV possesses a conserved acidic amino acid residue (Glu70, Asp142, Glu226 and Asp301) that putatively ligates Ca2+. Using annexin-IV DE mutants in which one, two or three residues out of the four Asp/Glu were altered to Ala by site-directed mutagenesis [Nelson and Creutz (1995) Biochemistry 34, 3121-3132], it was revealed that Ca2+ binding in the third domain is more important than in the other Ca2+-binding sites. SP-A is a member of the animal lectin group homologous with mannose-binding protein A. The substitution of Arg197 of rat SP-A with Asp or Asn eliminated binding to annexin IV, whereas the substitution of Glu195 with Gln was silent. These results suggest that the Ca2+ binding to domain 3 of annexin IV is required for the Ca2+-dependent binding by SP-A and that Arg197 of SP-A is important in this binding.
我们之前已经表明,表面活性蛋白A(SP-A)以Ca2+依赖的方式与膜联蛋白IV结合[Sohma、Matsushima、Watanabe、Hattori、Kuroki和Akino(1995年)《生物化学杂志》312卷,175 - 181页]。膜联蛋白IV是膜联蛋白家族的成员,具有四个约70个氨基酸的共有重复序列和一个独特的N端尾巴。在本研究中,使用突变蛋白研究了膜联蛋白IV和SP-A的Ca2+依赖结合功能位点。SP-A以Ca2+依赖的方式与由N端结构域和前三个结构域组成的膜联蛋白IV截短突变体(T(N-1-2-3))结合。SP-A也与T3-4结合,但这种相互作用不是Ca2+依赖的。SP-A与其他截短突变体(T(N-1-2)、T(2-3)和T(2-3-4))的结合较弱。膜联蛋白IV的每个共有重复序列都有一个保守的酸性氨基酸残基(Glu70、Asp142、Glu226和Asp301),推测其与Ca2+结合。使用通过定点诱变将四个Asp/Glu中的一个、两个或三个残基改变为Ala的膜联蛋白IV DE突变体[Nelson和Creutz(1995年)《生物化学》34卷,3121 - 3132页],发现第三个结构域中的Ca2+结合比其他Ca2+结合位点更重要。SP-A是与甘露糖结合蛋白A同源的动物凝集素组的成员。将大鼠SP-A的Arg197替换为Asp或Asn消除了与膜联蛋白IV的结合,而将Glu195替换为Gln则没有影响。这些结果表明,膜联蛋白IV结构域3中的Ca2+结合是SP-A Ca2+依赖结合所必需的,并且SP-A的Arg197在这种结合中很重要。