Schmitt M, Kanayama N, Henschen A, Hollrieder A, Hafter R, Gulba D, Jänicke F, Graeff H
Frauenklinik der Technischen Universität München, FRG.
FEBS Lett. 1989 Sep 11;255(1):83-8. doi: 10.1016/0014-5793(89)81065-8.
Proteolytic enzymes released from granulocytes upon stimulation with the chemotactic N-formyl peptide FNLPNTL (in the presence of cytochalasin B) prevented activation of tumor cell single-chain urokinase-type plasminogen activator (pro-uPA) by plasmin. Elastase was identified by the use of eglin C (elastase inhibitor) and a monoclonal antibody to elastase as the functional proteolytic enzyme in granulocyte supernatants. Action of purified granulocyte elastase on pro-uPA generated enzymatically inactive two-chain uPA linked by disulfide bridges which was indistinguishable by SDS-PAGE from plasmin-generated HMW-uPA. The major elastase cleavage site in pro-uPA was located between Ile159 and Ile160. a minor one between Thr165 and Thr166. Elastase cannot substitute for plasmin in the proteolytic activation of pro-uPA to enzymatically active HMW-uPA. However, when pro-uPA was first activated by plasmin to form enzymatically active HMW-uPA, this enzymatic activity was not impaired by subsequent elastase treatment.
在用趋化性N-甲酰肽FNLPNTL刺激(在细胞松弛素B存在的情况下)后,粒细胞释放的蛋白水解酶可阻止纤溶酶激活肿瘤细胞单链尿激酶型纤溶酶原激活剂(pro-uPA)。通过使用依林C(弹性蛋白酶抑制剂)和抗弹性蛋白酶单克隆抗体,确定弹性蛋白酶是粒细胞上清液中的功能性蛋白水解酶。纯化的粒细胞弹性蛋白酶对pro-uPA的作用产生了通过二硫键连接的无酶活性的双链uPA,其在SDS-PAGE上与纤溶酶产生的HMW-uPA无法区分。pro-uPA中主要的弹性蛋白酶切割位点位于Ile159和Ile160之间,次要位点位于Thr165和Thr166之间。弹性蛋白酶不能替代纤溶酶将pro-uPA蛋白水解激活为具有酶活性的HMW-uPA。然而,当pro-uPA首先被纤溶酶激活形成具有酶活性的HMW-uPA时,随后的弹性蛋白酶处理不会损害这种酶活性。