Corbin N C, Hugli T E
J Immunol. 1976 Sep;117(3):990-5.
Porcine C3a was generated in whole porcine serum by inulin activation of enzymes of the alternative complement pathway. The C3a anaphylatoxin was isolated according to the procedures previously described by Hugli. The complete amino acid sequence for porcine C3a was determined utilizing automatic sequencing techniques in addition to manual subtractive Edman degradation and carboxypeptidase A, B, or Y digestion of isolated peptides. Porcine C3a is composed of a polypeptide chain containing 77 amino acid residues and has a m.w. of approximately 9,000 daltons. This C3a molecule is devoid of threonine, tryptophan, and carbohydrates. The proposed primary structure for porcine C3a is as follows: (see article) Comparisons between the amino acid sequences of human and porcine C3a reveal that the six half-cystinyl and five aromatic residue positions are conserved. Conservation of these six half-cystinyl residue positions suggest that the disulfide arrangement remains identical in both anaphylatoxin molecules. Maintenance of three interconnected disulfide linkages helps to explain a near identity between the secondary structures of human and porcine C3a as indicated by circular dichroism measurements. Particular attention was focused on the COOH-terminal region of the anaphylatoxins since an arginyl residue at position 77 is functionally essential in both human and porcine C3a. Five residue positions at the carboxy termini were conserved in both C3a molecules, and the sequence Leu-Gly-Leu-Ala-Arg probably relates directly to anaphylatoxin activity. A total of 23 residue replacements occur between human and porcine C3a which accounts for a 30% difference in primary structure. Although the C3a molecules exhibit identical biologic activity, this rather large structural difference readily explains the absence of a detectable immunologic cross-reactivity.
通过菊粉激活替代补体途径的酶,在全猪血清中产生猪C3a。根据Hugli先前描述的程序分离C3a过敏毒素。除了对分离的肽进行手动减法埃德曼降解以及羧肽酶A、B或Y消化外,还利用自动测序技术确定了猪C3a的完整氨基酸序列。猪C3a由一条含有77个氨基酸残基的多肽链组成,分子量约为9000道尔顿。该C3a分子不含苏氨酸、色氨酸和碳水化合物。猪C3a的一级结构如下:(见文章)人与猪C3a氨基酸序列的比较表明,六个半胱氨酰基和五个芳香族残基位置是保守的。这六个半胱氨酰基残基位置的保守性表明,两种过敏毒素分子中的二硫键排列保持相同。三个相互连接的二硫键的维持有助于解释圆二色性测量所示的人与猪C3a二级结构之间的近乎一致性。由于77位的精氨酰残基在人和猪C3a中在功能上都是必不可少的,因此特别关注过敏毒素的COOH末端区域。两种C3a分子在羧基末端的五个残基位置是保守的,序列Leu-Gly-Leu-Ala-Arg可能与过敏毒素活性直接相关。人与猪C3a之间总共发生了23个残基替换,这导致一级结构有30%的差异。尽管C3a分子表现出相同的生物学活性,但这种相当大的结构差异很容易解释为什么没有可检测到的免疫交叉反应性。