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蓖麻胚乳程序性细胞死亡中发挥作用的KDEL尾半胱氨酸内肽酶的2.0 Å晶体结构和底物特异性

The 2.0 A crystal structure and substrate specificity of the KDEL-tailed cysteine endopeptidase functioning in programmed cell death of Ricinus communis endosperm.

作者信息

Than Manuel E, Helm Michael, Simpson David J, Lottspeich Friedrich, Huber Robert, Gietl Christine

机构信息

Max-Plank-Institut für Biochemie, Abteilung Strukturforschung, D-82152 Martinsried, Germany.

出版信息

J Mol Biol. 2004 Mar 5;336(5):1103-16. doi: 10.1016/j.jmb.2003.12.075.

Abstract

In the senescing endosperm of germinating castor bean (Ricinus communis) a special organelle (the ricinosome) releases a papain-type cysteine endopeptidase (CysEP) during the final stages of cellular disintegration. Protein cleavage sites for the Ricinus CysEP were determined with fluorogenic peptides (Abz-Xaa-Arg-/-Gln-Gln-Tyr(NO2)-Asp). The highest kcat/Km values were obtained with neutral amino acid residues with large aliphatic and non-polar (Leu, Val, Ile, Met) or aromatic (Phe, Tyr, Trp) side-chains. A second series (Abz-Leu-Xaa-/Gln-Pro-Tyr(NO2)-Asp) was evaluated. Based on these results, the covalent binding inhibitor H-D-Val-Leu-Lys-chloromethylketone (CMK) was chosen as substrate analogue for replacement in the catalytic site. Unusually, CysEP cleaved beta-casein N and C-terminal to the amino acid proline. CysEP was crystallized, its structure was solved by molecular replacement at 2.0 A resolution and refined to a R-factor of 18.1% (Rfree=22.6%). The polypeptide chain folds as in papain into two domains divided by the active site cleft, an elongated surface depression harboring the active site. The non-primed specificity subsites of the proteinase are clearly defined by the H-D-Val-Leu-Lys-CMK-inhibitor covalently bound to the active site. The absence of the occluding loop, which blocks the active site of exopeptidases at the C-terminal side of the scissile bond, identifies CysEP as an endopeptidase. The more open pocket of the Ricinus CysEP correlates with the extended variety of substrate amino acid residues accommodated by this enzyme, including even proline at the P1 and P1' positions. This may allow the enzyme to attack a greater variety of proteins during programmed cell death.

摘要

在萌发蓖麻籽(Ricinus communis)的衰老胚乳中,一种特殊的细胞器(蓖麻毒蛋白体)在细胞解体的最后阶段释放出一种木瓜蛋白酶型半胱氨酸内肽酶(CysEP)。用荧光肽(Abz-Xaa-Arg-/-Gln-Gln-Tyr(NO2)-Asp)确定了蓖麻CysEP的蛋白质切割位点。使用具有大的脂肪族和非极性(亮氨酸、缬氨酸、异亮氨酸、甲硫氨酸)或芳香族(苯丙氨酸、酪氨酸、色氨酸)侧链的中性氨基酸残基时,获得了最高的kcat/Km值。评估了第二个系列(Abz-Leu-Xaa-/Gln-Pro-Tyr(NO2)-Asp)。基于这些结果,选择共价结合抑制剂H-D-缬氨酸-亮氨酸-赖氨酸-氯甲基酮(CMK)作为底物类似物来取代催化位点。不同寻常的是,CysEP在氨基酸脯氨酸的β-酪蛋白N端和C端进行切割。CysEP被结晶,通过分子置换以2.0埃的分辨率解析其结构,并精修至R因子为18.1%(Rfree=22.6%)。多肽链像木瓜蛋白酶一样折叠成两个结构域,由活性位点裂缝分隔,活性位点位于一个细长的表面凹陷处。与活性位点共价结合的H-D-缬氨酸-亮氨酸-赖氨酸-CMK抑制剂清楚地定义了蛋白酶的非引发特异性亚位点。不存在在切割键C端侧阻断外肽酶活性位点的封闭环,这将CysEP鉴定为一种内肽酶。蓖麻CysEP更开放的口袋与该酶容纳的底物氨基酸残基的广泛多样性相关,甚至包括P1和P1'位置的脯氨酸。这可能使该酶在程序性细胞死亡期间能够攻击更多种类的蛋白质。

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