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CHEMICAL MODIFICATION OF CATIONIC GROUPS IN THE POLYPEPTIDE CARDIAC STIMULANT ANTHOPLEURIN-A

机译:多肽心脏兴奋剂抗视紫红质素-A中阳离子基团的化学修饰

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Chemical modification studies have been carried out on the sea anemone polypeptide anthopleurin-A in order to clarify the role of Arg-14 in its cardiac stimulatory activity. Reaction with 1,2-cyclohexanedione at 37 degrees C produced a range of protein products, including some with amino group modifications. These side-reactions were eliminated by prior citraconylation of the amino groups, which, following reaction with cyclohexanedione, could be reversed under conditions which preserved the cyclohexanedione adduct. Citraconylation of the three amino groups, one from the N-terminus and two from Lys-37 and Lys-48, destroyed the cardiac stimulatory activity of the molecule, but this was fully recoverable upon reversal of this reaction. It appears that one or more of the amino groups is essential for activity. Anthopleurin-A contains only one arginine residue, and this was confirmed as the site of modification by cyclohexanedione by showing that the product was refractory to proteolysis by trypsin, which normally cleaves the molecule at this residue. The positive inotropic activity of the cyclohexanedione adduct on isolated guinea-pig atria was identical to that of unmodified anthopleurin-A, indicating that the side-chain of Arg-14 is not required for cardiotonic activity. [References: 29]
机译:为了阐明Arg-14在其心脏刺激活性中的作用,已经对海葵多肽花青素-A进行了化学修饰研究。在37摄氏度下与1,2-环己二酮反应生成了一系列蛋白质产物,包括一些经过氨基修饰的蛋白质。这些副反应通过氨基的先前的甲磺酰化消除,其在与环己二酮反应后可以在保留环己二酮加合物的条件下逆转。三个氨基的柠檬酰基化,一个来自N末端,两个来自Lys-37和Lys-48,破坏了该分子的心脏刺激活性,但是在该反应逆转时可以完全恢复。似乎一个或多个氨基对于活性是必不可少的。花青素-A仅含有一个精氨酸残基,并通过证明产物对胰蛋白酶的蛋白水解具有抵抗力,从而证实该产物被环己二酮修饰,该胰蛋白酶通常在该残基处裂解该分子。环己二酮加合物对分离的豚鼠心房的正性肌力活性与未修饰的花青素-A的正性肌力活性相同,这表明强心活性不需要Arg-14的侧链。 [参考:29]

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