Ryser S, Vial E, Magnenat E, Schlegel W, Maundrell K
Ares-Serono, 14 ch. des Aulx, 1228 Plan-Les-Ouates, CH-1211 Geneva, Switzerland.
Curr Genet. 1999 Aug;36(1-2):21-8. doi: 10.1007/s002940050468.
Two pro-apoptotic proteases, caspase-1 and caspase-3, have been expressed as full-length proteins in the fission yeast Schizosaccharomyces pombe. Both proteins autoprocess to generate the corresponding active enzyme and both are lethal to the yeast cell. Lethality is due to catalytic activity since the expression of the inactive mutant forms of both caspases does not result in an obvious phenotype. Caspase-expressing yeast can be rescued by co-expression of the baculovirus protein p35, a known inhibitor of the caspase family. Co-expression of Bcl-2, another anti-apoptotic protein, does not prevent the cell death induced by either caspase. However, Bcl-2 is itself cleaved by both caspase-1 and caspase-3 at two adjacent recognition sites, YEWD(31')A and DAGD(34')V respectively, immediately downstream from the N-terminal BH4 domain, a region of Bcl-2 which is essential for its anti-apoptotic activity; similar cleavage of Bcl-2 by caspases has been demonstrated in mammalian cells. Hence, key elements of the apoptotic pathway can be reliably reconstituted in fission yeast, opening the way to exploit yeast in order to study the control of apoptosis. Furthermore, the activity of caspase-3, although not caspase-1, can be demonstrated in vitro using chromogenic substrates. This offers the possibility of using caspase-producing strains of yeast to screen for chemical inhibitors either in vivo or in vitro.
两种促凋亡蛋白酶,即半胱天冬酶 -1和半胱天冬酶 -3,已在裂殖酵母粟酒裂殖酵母中表达为全长蛋白。这两种蛋白都会自动加工以产生相应的活性酶,并且两者对酵母细胞都是致死性的。致死性是由于催化活性,因为两种半胱天冬酶的无活性突变形式的表达不会导致明显的表型。表达半胱天冬酶的酵母可以通过共表达杆状病毒蛋白p35来挽救,p35是一种已知的半胱天冬酶家族抑制剂。另一种抗凋亡蛋白Bcl-2的共表达并不能阻止由任何一种半胱天冬酶诱导的细胞死亡。然而,Bcl-2本身在紧邻N端BH4结构域下游的两个相邻识别位点YEWD(31')A和DAGD(34')V处分别被半胱天冬酶 -1和半胱天冬酶 -3切割,BH4结构域是Bcl-2抗凋亡活性所必需的区域;在哺乳动物细胞中也已证明半胱天冬酶对Bcl-2有类似的切割作用。因此,凋亡途径的关键元件可以在裂殖酵母中可靠地重建,为利用酵母研究细胞凋亡的调控开辟了道路。此外,虽然半胱天冬酶 -1不行,但可以使用显色底物在体外证明半胱天冬酶 -3的活性。这提供了利用产生半胱天冬酶的酵母菌株在体内或体外筛选化学抑制剂的可能性。