Beckmann Holger, Richter Julia, Hill Kerstin, Urban Nicole, Lemoine Horst, Schaefer Michael
Rudolf-Boehm-Institute of Pharmacology and Toxicology, Leipzig University, Härtelstraße 16-18, 04107 Leipzig, Germany.
Rudolf-Boehm-Institute of Pharmacology and Toxicology, Leipzig University, Härtelstraße 16-18, 04107 Leipzig, Germany.
Cell Calcium. 2017 Sep;66:10-18. doi: 10.1016/j.ceca.2017.05.012. Epub 2017 Jun 2.
The transient receptor potential canonical channel 5 (TRPC5) is a Ca-permeable ion channel, which is predominantly expressed in the brain. TRPC5-deficient mice exhibit a reduced innate fear response and impaired motor control. In addition, outgrowth of hippocampal and cerebellar neurons is retarded by TRPC5. However, pharmacological evidence of TRPC5 function on cellular or organismic levels is sparse. Thus, there is still a need for identifying novel and efficient TRPC5 channel modulators. We, therefore, screened compound libraries and identified the glucocorticoid methylprednisolone and N-[3-(adamantan-2-yloxy)propyl]-3-(6-methyl-1,1-dioxo-2H-1λ,2,4-benzothiadiazin-3-yl)propanamide (BTD) as novel TRPC5 activators. Comparisons with closely related chemical structures from the same libraries indicate important substructures for compound efficacy. Methylprednisolone activates TRPC5 heterologously expressed in HEK293 cells with an EC of 12μM, while BTD-induced half-maximal activation is achieved with 5-fold lower concentrations, both in Ca assays (EC=1.4μM) and in electrophysiological whole cell patch clamp recordings (EC=1.3 μM). The activation resulting from both compounds is long lasting, reversible and sensitive to clemizole, a recently established TRPC5 inhibitor. No influence of BTD on homotetrameric members of the remaining TRPC family was observed. On the main sensory TRP channels (TRPA1, TRPV1, TRPM3, TRPM8) BTD exerts only minor activity. Furthermore, BTD can activate heteromeric channel complexes consisting of TRPC5 and its closest relatives TRPC1 or TRPC4, suggesting a high selectivity of BTD for channel complexes bearing at least one TRPC5 subunit.
瞬时受体电位香草酸亚家族5型(TRPC5)是一种钙离子通透离子通道,主要在大脑中表达。TRPC5基因敲除小鼠表现出先天性恐惧反应降低和运动控制受损。此外,TRPC5会抑制海马体和小脑神经元的生长。然而,关于TRPC5在细胞或生物体水平上功能的药理学证据却很少。因此,仍然需要鉴定新型高效的TRPC5通道调节剂。为此,我们对化合物文库进行了筛选,确定了糖皮质激素甲泼尼龙和N-[3-(金刚烷-2-基氧基)丙基]-3-(6-甲基-1,1-二氧代-2H-1λ,2,4-苯并噻二嗪-3-基)丙酰胺(BTD)为新型TRPC5激活剂。与来自同一文库的密切相关化学结构进行比较,表明了化合物有效性的重要亚结构。甲泼尼龙在HEK293细胞中异源表达激活TRPC5的半数有效浓度(EC)为12μM,而在钙离子检测实验(EC=1.4μM)和电生理全细胞膜片钳记录实验(EC=1.3μM)中,BTD诱导半数最大激活的浓度要低5倍。这两种化合物引起的激活都是持久、可逆的,并且对最近确定的TRPC5抑制剂氯苯咪唑敏感。未观察到BTD对其余TRPC家族同源四聚体成员有影响。在主要的感觉型瞬时受体电位通道(TRPA1、TRPV1、TRPM3、TRPM8)上,BTD仅发挥微弱活性。此外,BTD可以激活由TRPC5及其最密切相关的TRPC1或TRPC4组成的异源通道复合物,这表明BTD对含有至少一个TRPC5亚基的通道复合物具有高度选择性。
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