Na S, Chuang T H, Cunningham A, Turi T G, Hanke J H, Bokoch G M, Danley D E
Department of Molecular Sciences, Pfizer Inc., Groton, Connecticut 06340, USA.
J Biol Chem. 1996 May 10;271(19):11209-13. doi: 10.1074/jbc.271.19.11209.
Apoptosis (programmed cell death) is a fundamental process for normal development of multicellular organisms, and is involved in the regulation of the immune system, normal morphogenesis, and maintenance of homeostasis, ICE/CED-3 family cysteine proteases have been implicated directly in apoptosis, but relatively few of the substrates through which their action is mediated have been identified. Here we report that D4-GDI, an abundant hematopoietic cell GDP dissociation inhibitor for the Ras-related Rho family GTPases, is a substrate of the apoptosis protease CPP32/Yama/Apopain. D4-GDI was rapidly truncated to a 23-kDa fragment in Jurkat cells with kinetics that parallel the onset of apoptosis following Fas cross-linking with agonistic antibody or treatment with staurosporine. Fas- and staurosporine-induced apoptosis as well as cleavage of D4-GDI were inhibited by the ICE inhibitor, YVAD-cmk. D4-GDI was cleaved in vitro by recombinant CPP32 expressed in Escherichia coli to form a 23-kDa fragment. The CPP32-mediated cleavage of D4-GDI was completely inhibited by 1 microM DEVD-CHO, a reported selective inhibitor of CPP32. In contrast, the ICE-selective inhibitors, YVAD-CHO or YVAD-cmk, did not inhibit CPP32-mediated D4-GDI cleavage at concentrations up to 50 microM. N-terminal sequencing of the 23-kDa D4-GDI fragment demonstrated that D4-GDI was cleaved between Asp19 and Ser20 of the poly(ADP-ribose) polymerase-like cleavage sequence DELD19S. These data suggest that regulation by D4-GDI of Rho family GTPases may be disrupted during apoptosis by CPP32-mediated cleavage of the GDI protein.
凋亡(程序性细胞死亡)是多细胞生物正常发育的一个基本过程,参与免疫系统调节、正常形态发生以及体内平衡的维持。ICE/CED-3家族半胱氨酸蛋白酶已被直接证明与凋亡有关,但介导其作用的底物相对较少被鉴定出来。在此我们报告,D4-GDI是一种丰富的造血细胞中Ras相关Rho家族GTP酶的GDP解离抑制剂,它是凋亡蛋白酶CPP32/Yama/Apopain的底物。在用激动剂抗体使Fas交联或用星形孢菌素处理后,Jurkat细胞中的D4-GDI迅速被截短为一个23 kDa的片段,其动力学与凋亡的起始平行。ICE抑制剂YVAD-cmk抑制了Fas和星形孢菌素诱导的凋亡以及D4-GDI的裂解。在体外,D4-GDI被大肠杆菌中表达的重组CPP32裂解,形成一个23 kDa的片段。1 μM的DEVD-CHO(一种报道的CPP32选择性抑制剂)完全抑制CPP32介导的D4-GDI裂解。相比之下,ICE选择性抑制剂YVAD-CHO或YVAD-cmk在浓度高达50 μM时不抑制CPP32介导的D4-GDI裂解。对23 kDa D4-GDI片段的N端测序表明,D4-GDI在聚(ADP-核糖)聚合酶样裂解序列DELD19S的Asp19和Ser20之间被裂解。这些数据表明,在凋亡过程中,CPP32介导的GDI蛋白裂解可能会破坏D4-GDI对Rho家族GTP酶的调节。