Department of Applied Molecular Biosciences, Graduate School of Bioagricultural Sciences, Nagoya University, Chikusa-ku, Nagoya, Japan.
FEBS J. 2010 Nov;277(21):4412-26. doi: 10.1111/j.1742-4658.2010.07822.x. Epub 2010 Sep 16.
Calpain 7, a mammalian ortholog of yeast Cpl1/Rim13 and fungal PalB, is an atypical calpain that lacks a penta-EF-hand domain. Previously, we reported that a region containing a tandem repeat of microtubule-interacting and transport (MIT) domains in calpain 7 interacts with a subset of endosomal sorting complex required for transport (ESCRT)-III-related proteins, suggesting involvement of calpain 7 in the ESCRT system. Although yeast and fungal calpains are thought to be involved in alkaline adaptation via limited proteolysis of specific transcription factors, proteolytic activity of calpain 7 has not been demonstrated yet. In this study, we investigated the interaction between calpain 7 and a newly reported ESCRT-III family member, increased sodium tolerance-1 (IST1), which possesses two different types of MIT-interacting motifs (MIM1 and MIM2). We found that glutathione-S-transferase (GST)-fused tandem MIT domains of calpain 7 (calpain 7MIT) pulled down FLAG-tagged IST1 expressed in HEK293T cells. Coimmunoprecipitation assays with various deletion or point mutants of epitope-tagged calpain 7 and IST1 revealed that both repetitive MIT domains and MIMs are required for efficient interaction. Direct MIT-MIM binding was confirmed by a pulldown experiment with GST-fused IST1 MIM and purified recombinant calpain 7MIT. Furthermore, we found that the GST-MIM protein enhances the autolysis of purified Strep-tagged monomeric green fluorescent protein (mGFP)-fused calpain 7 (mGFP-calpain 7-Strep). The autolysis was almost completely abolished by 10 mmN-ethylmaleimide but only partially inhibited by 1 mm leupeptin or E-64. The putative catalytic Cys290-substituted mutant (mGFP-calpain 7(C290S)-Strep) showed no autolytic activity. These results demonstrate for the first time that human calpain 7 is proteolytically active, and imply that calpain 7 is activated in the ESCRT system.
钙蛋白酶 7 是酵母 Cpl1/Rim13 和真菌 PalB 的哺乳动物同源物,是一种缺乏五聚 EF 手结构域的非典型钙蛋白酶。以前,我们报道钙蛋白酶 7 中的微管相互作用和运输 (MIT) 结构域串联重复区与内体分选复合物必需的运输 (ESCRT)-III 相关蛋白的亚基相互作用,表明钙蛋白酶 7 参与了 ESCRT 系统。尽管酵母和真菌钙蛋白酶被认为通过特定转录因子的有限蛋白水解参与碱性适应,但尚未证明钙蛋白酶 7 的蛋白水解活性。在这项研究中,我们研究了钙蛋白酶 7 与新报道的 ESCRT-III 家族成员增加的钠耐受 1(IST1)之间的相互作用,IST1 具有两种不同类型的 MIT 相互作用基序(MIM1 和 MIM2)。我们发现 GST 融合的钙蛋白酶 7(钙蛋白酶 7MIT)串联 MIT 结构域拉下了在 HEK293T 细胞中表达的 FLAG 标记的 IST1。用各种缺失或点突变的表位标记钙蛋白酶 7 和 IST1 的共免疫沉淀实验表明,重复的 MIT 结构域和 MIMs 都需要有效的相互作用。通过 GST 融合的 IST1 MIM 和纯化的重组钙蛋白酶 7MIT 的下拉实验证实了直接的 MIT-MIM 结合。此外,我们发现 GST-MIM 蛋白增强了纯化的 Strep 标记单体绿色荧光蛋白(mGFP)融合钙蛋白酶 7(mGFP-calpain 7-Strep)的自水解。自水解几乎完全被 10mmN-乙基马来酰亚胺阻断,但仅被 1mm 亮抑酶肽或 E-64 部分抑制。假定的催化 Cys290 取代突变体(mGFP-calpain 7(C290S)-Strep)没有自水解活性。这些结果首次表明人钙蛋白酶 7 具有蛋白水解活性,并暗示钙蛋白酶 7 在 ESCRT 系统中被激活。