Engineering ML-IAP to produce an extraordinarily potent caspase 9 inhibitor: implications for Smac-dependent anti-apoptotic activity of ML-IAP

夏普 半胱氨酸蛋白酶 凋亡抑制因子 细胞凋亡 半胱氨酸蛋白酶-9 化学 半胱氨酸蛋白酶8 分子生物学 凋亡结构域抑制剂 细胞生物学 癌症研究 生物 生物化学 程序性细胞死亡
作者
Domagoj Vucic,Matthew C. Franklin,Heidi J.A. Wallweber,Kanad Das,Brendan P. Eckelman,Hwain Shin,Linda O. Elliott,Saloumeh Kadkhodayan,Kurt D. Deshayes,Guy S. Salvesen,Wayne J. Fairbrother
出处
期刊:Biochemical Journal [Portland Press]
卷期号:385 (1): 11-20 被引量:133
标识
DOI:10.1042/bj20041108
摘要

ML-IAP (melanoma inhibitor of apoptosis) is a potent anti-apoptotic protein that is strongly up-regulated in melanoma and confers protection against a variety of pro-apoptotic stimuli. The mechanism by which ML-IAP regulates apoptosis is unclear, although weak inhibition of caspases 3 and 9 has been reported. Here, the binding to and inhibition of caspase 9 by the single BIR (baculovirus IAP repeat) domain of ML-IAP has been investigated and found to be significantly less potent than the ubiquitously expressed XIAP (X-linked IAP). Engineering of the ML-IAP-BIR domain, based on comparisons with the third BIR domain of XIAP, resulted in a chimeric BIR domain that binds to and inhibits caspase 9 significantly better than either ML-IAP-BIR or XIAP-BIR3. Mutational analysis of the ML-IAP-BIR domain demonstrated that similar enhancements in caspase 9 affinity can be achieved with only three amino acid substitutions. However, none of these modifications affected binding of the ML-IAP-BIR domain to the IAP antagonist Smac (second mitochondrial activator of caspases). ML-IAP-BIR was found to bind mature Smac with low nanomolar affinity, similar to that of XIAP-BIR2-BIR3. Correspondingly, increased expression of ML-IAP results in formation of a ML-IAP-Smac complex and disruption of the endogenous interaction between XIAP and mature Smac. These results suggest that ML-IAP might regulate apoptosis by sequestering Smac and preventing it from antagonizing XIAP-mediated inhibition of caspases, rather than by direct inhibition of caspases.
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