Authier F, Métioui M, Bell A W, Mort J S
INSERM U510, Faculté de Pharmacie Paris XI, 5 rue Jean-Baptiste Clément, 92296 Châtenay-Malabry, France.
J Biol Chem. 1999 Nov 19;274(47):33723-31. doi: 10.1074/jbc.274.47.33723.
We have investigated the relevant protease activity in rat liver, which is responsible for most of the receptor-mediated epidermal growth factor (EGF) degradation in vivo. EGF was sequentially cleaved by endosomal proteases at a limited number of sites, which were identified by high performance liquid chromatography and mass spectrometry. EGF proteolysis is initiated by hydrolysis at the C-terminal Glu(51)-Leu(52) bond. Three additional minor cleavage sites were identified at positions Arg(48)-Trp(49), Trp(49)-Trp(50), and Trp(50)-Glu(51) after prolonged incubation. Using nondenaturating immunoprecipitation and cross-linking procedures, the major proteolytic activity was identified as that of the cysteine protease cathepsin-B. The effect of injected EGF on subsequent endosomal EGF receptor (EGFR) proteolysis was further evaluated by immunoblotting. Using endosomal fractions prepared from EGF-injected rats and incubated in vitro, the EGFR was lost with a time course superimposable with the loss of phosphotyrosine content. The cathepsin-B proinhibitor CA074-Me inhibited both in vivo and in vitro the endosomal degradation of the EGFR and increased the tyrosine phosphorylation states of the EGFR protein and the molecule SHC within endosomes. The data, therefore, describe a unique pathway for the endosomal processing of internalized EGF receptor complexes, which involves the sequential function of cathepsin-B through selective degradation of both the ligand and receptor.
我们研究了大鼠肝脏中的相关蛋白酶活性,该活性负责体内大部分受体介导的表皮生长因子(EGF)降解。EGF在内体蛋白酶作用下在有限数量的位点被依次切割,这些位点通过高效液相色谱和质谱鉴定。EGF蛋白水解通过C末端Glu(51)-Leu(52)键的水解启动。长时间孵育后,在Arg(48)-Trp(49)、Trp(49)-Trp(50)和Trp(50)-Glu(51)位置又鉴定出另外三个次要切割位点。使用非变性免疫沉淀和交联程序,主要蛋白水解活性被鉴定为半胱氨酸蛋白酶组织蛋白酶B的活性。通过免疫印迹进一步评估注射的EGF对随后内体EGF受体(EGFR)蛋白水解的影响。使用从注射EGF的大鼠制备的内体组分并在体外孵育,EGFR随时间丢失,其时间进程与磷酸酪氨酸含量的丢失重叠。组织蛋白酶B前体抑制剂CA074-Me在体内和体外均抑制EGFR的内体降解,并增加内体中EGFR蛋白和分子SHC的酪氨酸磷酸化状态。因此,这些数据描述了内化的EGF受体复合物内体加工的独特途径,该途径涉及组织蛋白酶B通过对配体和受体的选择性降解发挥的顺序作用。