Monroe D M, Noyes C M, Straight D L, Roberts H R, Griffith M J
Arch Biochem Biophys. 1985 May 1;238(2):490-6. doi: 10.1016/0003-9861(85)90192-4.
Human factor IX is activated to factor IXa beta when factor XIa cleaves two peptide bonds, Arg 145-Ala 146 and Arg 180-Val 181, to release an activation peptide. In factor IX Chapel Hill (IXCH), isolated from a hemophilia B patient with a mild bleeding disorder, the arginine 145 residue has been replaced with a histidine. Thus factor IXCH is activated by factor XIa by cleaving only at the Arg 180-Val 181 bond, leaving the activation peptide attached, and resulting in an activated species, factor IXa alpha CH, that, like normal factor IXa alpha, is only 20% as active as factor IXa beta. It is reported that both factor IX and factor IXCH could be activated by trypsin to forms of factor IXa beta and factor IXa beta CH that had clotting activities identical to factor XIa-activated factor IX. Amino-terminal amino acid sequence analysis showed that trypsin cleaved factor IX at the same bonds as did factor XIa; factor IXCH was cleaved at the Arg 180-Val 181 bond, as normal, and was cleaved near the histidine 145, at the Lys 142-Leu 143 bond, releasing a slightly larger activation peptide than from normal factor IXa beta. Metal ions had no effect on the rate of activation of factor IX by trypsin; however, metal ions had a profound effect on the rate at which further incubation with trypsin inactivated factor IXa. Calcium and manganese protected factor IXa from inactivation by trypsin more effectively than magnesium, which was more effective than no metal ion. It is concluded that trypsin can activate normal factor IX and factor IXCH to fully active IXa beta forms.
当因子 XIa 切割两个肽键(精氨酸 145 - 丙氨酸 146 和精氨酸 180 - 缬氨酸 181)以释放激活肽时,人因子 IX 被激活为因子 IXaβ。在从一名患有轻度出血性疾病的 B 型血友病患者中分离出的因子 IX 查珀尔希尔(IXCH)中,精氨酸 145 残基被组氨酸取代。因此,因子 IXCH 仅通过在精氨酸 180 - 缬氨酸 181 键处切割而被因子 XIa 激活,激活肽仍附着,产生一种激活形式,即因子 IXaαCH,它与正常因子 IXaα一样,活性仅为因子 IXaβ的 20%。据报道,因子 IX 和因子 IXCH 都可被胰蛋白酶激活为具有与因子 XIa 激活的因子 IX 相同凝血活性的因子 IXaβ和因子 IXaβCH 形式。氨基末端氨基酸序列分析表明,胰蛋白酶与因子 XIa 一样在相同的肽键处切割因子 IX;因子 IXCH 如正常情况一样在精氨酸 180 - 缬氨酸 181 键处被切割,并在组氨酸 145 附近的赖氨酸 142 - 亮氨酸 143 键处被切割,释放出比正常因子 IXaβ稍大的激活肽。金属离子对胰蛋白酶激活因子 IX 的速率没有影响;然而,金属离子对因子 IXa 与胰蛋白酶进一步孵育使其失活的速率有深远影响。钙和锰比镁更有效地保护因子 IXa 不被胰蛋白酶失活,而镁又比无金属离子的情况更有效。结论是胰蛋白酶可将正常因子 IX 和因子 IXCH 激活为完全活性的 IXaβ形式。