首页> 外文期刊>The Biochemical Journal >Purification of native p94, a muscle-specific calpain, and characterization of its autolysis.
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Purification of native p94, a muscle-specific calpain, and characterization of its autolysis.

机译:天然p94(一种肌肉特异性钙蛋白酶)的纯化及其自溶特性。

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摘要

p94, a skeletal muscle-specific calpain, has attracted much attention because its gene is responsible for limb-girdle muscular dystrophy type 2A. p94, however, has not been characterized at the protein and enzyme levels, owing to its very rapid autolysis. In the present study, a purification procedure for p94 was first established by using a recombinant inactive p94 expressed in COS cells in which the active site cysteine residue was changed to serine [p94(C129S)]. The isolation of native p94 from rabbit skeletal muscle by the established method with conventional procedures was extremely difficult because p94 became highly unstable in a crude extract on the addition of NaCl for separation. Purification of native p94 was possible with an antibody-affinity column but only as an inactive enzyme; p94(C129S) was purified as a homodimer. Characterization of p94, especially autolysis, was performed with partly purified native p94 and p94(C129S). The autolysis of p94, which consisted at least partly of an intermolecular reaction, proceeded in three consecutive steps; 60 and 58 kDa fragments were produced as intermediates before a stable 55 kDa fragment appeared. Autolysis of p94 was regarded as a degradative step rather than for the activation of the enzyme. All the autolysis cleavage sites were located in the p94-specific insertion sequence 1 region, which explains why p94 is unstable compared with the other calpains. The autolysis sites in p94 clearly showed a different specificity relative to the autolytic and proteolytic cleavage sites of the ubiquitous mu- and m-calpains, in its preference for residues at the P3 to P1' sites, indicating a distinct substrate specificity and function for the muscle enzyme.
机译:p94,一种骨骼肌特异性钙蛋白酶,已经引起了广泛的关注,因为其基因与2A型肢带型肌营养不良症有关。然而,由于p94的自溶作用非常迅速,因此尚未在蛋白质和酶的水平上进行鉴定。在本研究中,首先通过使用在COS细胞中表达的重组无活性p94建立p94的纯化程序,其中活性位点的半胱氨酸残基变为丝氨酸[p94(C129S)]。用常规方法通过既定方法从兔骨骼肌中分离天然p94非常困难,因为在添加NaCl进行分离时,粗提取物中p94变得高度不稳定。天然p94的纯化可以通过抗体亲和柱进行,但只能作为无活性的酶使用。纯化p94(C129S)为同源二聚体。用部分纯化的天然p94和p94(C129S)进行p94的表征,尤其是自溶。 p94的自溶至少要部分地由分子间反应组成,需要三个连续的步骤进行。在稳定的55kDa片段出现之前,产生60和58kDa片段作为中间体。 p94的自溶被认为是降解步骤,而不是酶的活化。所有自溶裂解位点均位于p94特异性插入序列1区域,这解释了为什么p94与其他钙蛋白酶相比不稳定。 p94中的自溶位点相对于普遍存在的mu-和m-calpains的自溶和蛋白水解切割位点明显显示出不同的特异性,它优先选择P3至P1'位点的残基,表明该酶具有独特的底物特异性和功能肌肉酶。

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