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Investigation of TRPV1 loss-of-function phenotypes in TRPV1 Leu206Stop mice generated by N-ethyl-N-nitrosourea mutagenesis

机译:N-乙基-NITSOUREA诱变产生的TRPV1 LEU206STOP小鼠TRPV1函数表型的研究

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N-ethyl-N-nitrosourea (ENU) random mutagenesis was used to generate a mouse model for the analysis of the transient receptor potential vanilloid 1 (TRPV1) cation channel. A transversion from T - A in exon 4 led to a Leu206Stop mutation generating a loss-of-function mutant. The TRPV1 agonist capsaicin was used to analyze functional and nociceptive parameters in vitro and in vivo in TRPV1 Leu206Stop mice and congenic C3HeB/FeJ controls. Capsaicin-induced [Ca2+](i) changes in small diameter DRG neurons were significantly diminished in TRPV1 Leu206Stop mice and administration of capsaicin induced neither hypothermia nor nocifensive behaviour in vivo. TRPV1 Leu206Stop mice were tested in the spinal nerve ligation of mononeuropathic pain and developed mechanical hypersensitivity two weeks after nerve injury. In the open field test, a significant increase in spontaneous locomotion was detected in TRPV1 Leu206Stop mice as compared to wildtype controls. TRPV1 knockout mice have been reported to carry a similar phenotype regarding capsaicin-evoked responses in vitro and in vivo. However, in contrast to TRPV1 Leu206Stop mice, TRPV1 knockout mice did not differ in spontaneous locomotion as compared to congenic C57BL/6 mice, suggesting subtle ENU-dependent or independent strain differences between TRPV1 Leu206Stop mice and their wildtype controls. In summary, these data revealed a target-related (i.e. capsaicin-evoked) phenotype of TRPV1 Leu206Stop mice closely resembling that of published TRPV1 knockout mice. However, since ENU-mutant mice are congenic with the mouse strain initially used in random mutagenesis, direct phenotypic comparison with the respective wildtype controls is possible, and the time-consuming backcrossing in lines with targeted mutations is avoided. (C) 2018 Elsevier Inc. All rights reserved.
机译:N-乙基-N-硝基脲(ENU)随机诱变用于产生用于分析瞬时受体潜在香草1(TRPV1)阳离子通道的小鼠模型。来自t - &gt的横转化; A在外显子4导致Leu206Stop突变产生函数突变体。 TRPV1激动剂辣椒蛋白用于分析TRPV1 LEU206STOP小鼠体外和体内功能性和伤害性参数,并在TRPV1 LEU206STOP小鼠和CONGIC C3HEB / FEJ对照中进行体内。辣椒素诱导的[Ca2 +](I)小直径DRG神经元的变化在TRPV1 Leu206中显着减少,并且辣椒蛋白诱导的辣椒素诱导的体内下降和巨大的行为。 TRPV1 LEU206STOP小鼠在单一病变疼痛的脊神经结扎中进行测试,并在神经损伤后两周发育机械超敏反应。在开放场测试中,与野生型控制相比,在TRPV1 Leu206 Stop小鼠中检测到自发运动的显着增加。据报道,TRPV1敲除小鼠在体外和体内携带关于辣椒素诱发的反应的类似表型。然而,与TRPV1 LEU206STOP小鼠相比,与C57BL / 6小鼠相比,TRPV1敲除小鼠在自发运动中没有不同,表明TRPV1 LEU206STOP小鼠与其野生型控制之间的微妙的ENU依赖性或独立的应变差异。总之,这些数据揭示了TRPV1 Leu206stop小鼠的目标相关(即辣椒蛋白诱发)表型,与已发表的TRPV1敲除小鼠密切相关。然而,由于enu-突变小鼠与最初用于随机诱变中的小鼠菌株,因此可以避免与各种野生型控制的直接表型比较,并且避免了占用靶向突变线的耗时的回复。 (c)2018年Elsevier Inc.保留所有权利。

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