Shih M, Ma H, Nakajima E, David L L, Azuma M, Shearer T R
Department of Integrative Biosciences, Oral Molecular Biology, Oregon Health & Science University, 611 SW Campus Drive, Portland, OR 97201-3097, USA.
Exp Eye Res. 2006 Jan;82(1):146-52. doi: 10.1016/j.exer.2005.06.011. Epub 2005 Jul 27.
Lens-specific Lp82 and ubiquitous m-calpain are neutral, calcium-activated, cysteine proteases. Both calpains are activated during rodent lens maturation and cataract formation. Lp85 calpain (Lens protein with MW=85 kDa) is a slightly larger splice variant of Lp82. Lp85 contains a 28 amino acid insert peptide (IS3) in calcium binding domain IV. Theoretically, the insert could alter the properties of Lp85 and influence proteolytic activity. The purpose of the present experiment was to compare the biochemical properties of Lp85 to Lp82 and m-calpain. Recombinant Lp85 and Lp82 were separately expressed using the baculovirus system and partially purified using Co2+ affinity and DEAE chromatographies. Calcium activation, pH dependency, and susceptibility to calpain inhibitors were assessed in a protease assay using BODIPY fluorescence-labeled casein substrate. Hydrolysis of lens proteins was assessed by SDS-PAGE and immunoblotting. Cleavage site analysis was performed by mass spectroscopy and Edman sequencing. Computer-based homology modeling was used to predict the influence of the IS3 region on the 3-dimensional structure of Lp85. Compared to m-calpain, Lp85 showed a lower calcium-activation requirement (K(50%act)=20 microM), marked insensitivity to, and cleavage of, the endogenous tissue inhibitor of calpains-calpastatin, and different preferred cleavage sites on alphaA-crystallin (five amino acid C-terminal truncation) and on aquaporin 0 (G239 and N246). Although the IS3 insert was predicted to form a loop protruding from the calcium binding region of Lp85, the biochemical properties of Lp85 studied were nearly identical to those of Lp82. Lp85 and Lp82 did not catalyze hydrolysis of each other, but both hydrolyzed m-calpain. Lp85 seems to be the enzymatic equivalent of Lp82. Both calpains could become active at lower cellular calcium levels than m-calpain. Lp85/Lp82 may have different functions than m-calpain since they cleave substrates at different sites. Lp85/Lp82 may regulate m-calpain activity by catalyzing the hydrolysis of calpastatin. The function of the IS3 insert on Lp85 remains unknown but is speculated to control subcellular distribution.
晶状体特异性Lp82和普遍存在的m-钙蛋白酶是中性的、钙激活的半胱氨酸蛋白酶。在啮齿动物晶状体成熟和白内障形成过程中,这两种钙蛋白酶均被激活。Lp85钙蛋白酶(分子量为85 kDa的晶状体蛋白)是Lp82的一种稍大的剪接变体。Lp85在钙结合结构域IV中含有一个28个氨基酸的插入肽(IS3)。从理论上讲,该插入肽可能会改变Lp85的特性并影响其蛋白水解活性。本实验的目的是比较Lp85与Lp82和m-钙蛋白酶的生化特性。使用杆状病毒系统分别表达重组Lp85和Lp82,并通过Co2+亲和色谱和DEAE色谱进行部分纯化。使用BODIPY荧光标记的酪蛋白底物,通过蛋白酶测定评估钙激活、pH依赖性和对钙蛋白酶抑制剂的敏感性。通过SDS-PAGE和免疫印迹评估晶状体蛋白的水解情况。通过质谱和埃德曼测序进行切割位点分析。基于计算机的同源建模用于预测IS3区域对Lp85三维结构的影响。与m-钙蛋白酶相比,Lp85显示出较低的钙激活需求(K(50%act)=20 microM),对钙蛋白酶内源性组织抑制剂——钙蛋白酶抑制蛋白具有明显的不敏感性且能对其进行切割,并且在αA-晶状体蛋白(C末端截短5个氨基酸)和水通道蛋白0(G239和N246)上具有不同的优先切割位点。尽管预测IS3插入肽会形成一个从Lp85钙结合区域突出的环,但所研究的Lp85的生化特性与Lp82几乎相同。Lp85和Lp82不会相互催化水解,但两者都会水解m-钙蛋白酶。Lp85似乎在酶学上等同于Lp82。与m-钙蛋白酶相比,这两种钙蛋白酶在较低的细胞钙水平下就能变得活跃。Lp85/Lp82可能具有与m-钙蛋白酶不同的功能,因为它们在不同位点切割底物。Lp85/Lp82可能通过催化钙蛋白酶抑制蛋白的水解来调节m-钙蛋白酶的活性。Lp85上IS3插入肽的功能尚不清楚,但推测其可控制亚细胞分布。