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TRPM2通道N端参与钙敏感性的新型EF环的鉴定。

Identification of a Novel EF-Loop in the N-terminus of TRPM2 Channel Involved in Calcium Sensitivity.

作者信息

Luo Yuhuan, Yu Xiafei, Ma Cheng, Luo Jianhong, Yang Wei

机构信息

Department of Neurobiology, Institute of Neuroscience, NHC and CAMS Key Laboratory of Medical Neurobiology, Zhejiang University School of Medicine, Hangzhou, China.

Co-facility Center, Zhejiang University School of Medicine, Hangzhou, China.

出版信息

Front Pharmacol. 2018 Jun 4;9:581. doi: 10.3389/fphar.2018.00581. eCollection 2018.

Abstract

As an oxidative stress sensor, transient receptor potential melastatin 2 (TRPM2) channel is involved in many physiological and pathological processes including warmth sensing, ischemia injury, inflammatory diseases and diabetes. Intracellular calcium is critical for TRPM2 channel activation and the IQ-like motif in the N-terminus has been shown to be important by mediating calmodulin binding. Sequence analysis predicted two potential EF-loops in the N-terminus of TRPM2. Site-directed mutagenesis combining with functional assay showed that substitution with alanine of several residues, most of which are conserved in the typical EF-loop, including D267, D278, D288, and E298 dramatically reduced TRPM2 channel currents. By further changing the charges or side chain length of these conserved residues, our results indicate that the negative charge of D267 and the side chain length of D278 are critical for calcium-induced TRPM2 channel activation. G272I mutation also dramatically reduced the channel currents, suggesting that this site is critical for calcium-induced TRPM2 channel activation. Furthermore, D267A mutant dramatically reduced the currents induced by calcium alone compared with that by ADPR, indicating that D267 residue in D267-D278 motif is the most important site for calcium sensitivity of TRPM2. In addition, inside-out recordings showed that mutations at D267, G272, D278, and E298 had no effect on single-channel conductance. Taken together, our data indicate that D267-D278 motif in the N-terminus as a novel EF-loop is critical for calcium-induced TRPM2 channel activation.

摘要

作为一种氧化应激传感器,瞬时受体电位香草酸亚型2(TRPM2)通道参与许多生理和病理过程,包括热感、缺血损伤、炎症性疾病和糖尿病。细胞内钙对于TRPM2通道的激活至关重要,并且已证明N端的IQ样基序通过介导钙调蛋白结合而发挥重要作用。序列分析预测TRPM2的N端有两个潜在的EF环。定点诱变结合功能测定表明,将几个残基(其中大多数在典型的EF环中保守,包括D267、D278、D288和E298)替换为丙氨酸会显著降低TRPM2通道电流。通过进一步改变这些保守残基的电荷或侧链长度,我们的结果表明D267的负电荷和D278的侧链长度对于钙诱导的TRPM2通道激活至关重要。G272I突变也显著降低了通道电流,表明该位点对于钙诱导的TRPM2通道激活至关重要。此外,与ADPR诱导的电流相比,D267A突变体显著降低了单独由钙诱导的电流,表明D267-D278基序中的D267残基是TRPM2钙敏感性的最重要位点。此外,外向膜片钳记录表明,D267、G272、D278和E298处的突变对单通道电导没有影响。综上所述,我们的数据表明N端的D267-D278基序作为一个新的EF环对于钙诱导的TRPM2通道激活至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ebcc/5994415/2943fc330096/fphar-09-00581-g001.jpg

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