敬钊毒素-XI与突变体R3A-JZTX-XI的合成、复性及其药理活性鉴定
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国家重点基础研究发展计划 (973计划) (Nos. 2009CB526510, 2010CB529800),国家高技术研究发展计划 (863计划) (No. 2006AA02Z141),湖南省自然科学基金 (Nos. 07JJ3072, 07A035),教育部新世纪优秀人才支持计划 (No. NCET-07-0279),国家自然科学基金 (No. 30971432),湖南省研究生科研创新项目 (No. CX2009B111) 资助。


Synthesis, refolding and identification of pharmacological activities of neurotoxin JZTX-XI and R3A-JZTX-XI
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National Basic Research and Development Program of China (973 Program) (Nos. 2009CB526510, 2010CB529800), National High Technology Research and Development Program of China (863 Program) (No. 2006AA02Z141), Natural Science Foundation of Hunan Province (No

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    摘要:

    表达于b-胰岛细胞上的Kv2.1钾通道电流负责动作电位的复极化,从而调节胰岛素的分泌,是治疗2型糖尿病的有效作用靶点。敬钊毒素-XI(JZTX-XI) 是从敬钊缨毛蛛Chilobrachys jingzhao粗毒中分离纯化到的一种新型的肽类神经毒素,能够抑制非洲爪蟾卵母细胞上表达的Kv2.1钾通道电流。为了研究JZTX-XI的结构与功能关系,用芴甲氧羰基 (Fomc) 固相多肽合成方法合成了野生型JZTX-XI和突变体R3A-JZTX-XI,结合反相HPLC和质谱对不同条件下的氧化复性结果进行检测,从而得

    Abstract:

    Kv2.1 channel currents in pancreatic b-cells are thought to contribute to action potential repolarization and thereby modulate insulin secretion. Because of its central role in this important physiological process, Kv2.1 channel is a promising target for the treatment of type 2 diabetes. Jingzhaotoxin-XI (JZTX-XI) is a novel peptide neurotoxin isolated from the venom of the spider Chilobrachys jingzhao. Two-microelectrode voltage clamp experiments had showed that the toxin inhibited Kv2.1 potassium currents expressed in Xenopus Laevis oocytes. In order to investigate the structure-function relationship of JZTX-XI, the natural toxin and a mutant of JZTX-XI in which Arg3 was replaced by Ala, were synthesized by solid-phase chemistry method with Fmoc-protected amino acids on the PS3 automated peptide synthesizer. Reverse-phase high performance liquid chromatography (RP-HPLC) and matrix assisted laser desorption/ ionization time-of-flight mass spectrometry (MALDI-TOF/TOF MS) were used to monitor the oxidative refolding process of synthetic linear peptides to find the optimal renaturation conditions of these toxins. The experiments also proved that the relative molecular masses of refolded peptides were in accordance with their theoretical molecular masses. RP-HPLC chromatogram of co-injected native and refolded JZTX-XI was a single peak. Under the whole-cell patch-clamp mode, JZTX-XI could completely inhibit hKv2.1 and hNav1.5 channels currents expressed in HEK293T cells with IC50 values of 95.8 nmol/L and 437.1 nmol/L respectively. The mutant R3A-JZTX-XI could also inhibit hKv2.1 and hNav1.5 channel currents expressed in HEK293T cells with IC50 values of 1.22 mmol/L and 1.96 mmol/L respectively. However, the prohibitive levels of R3A-JZTX-XI on hKv2.1 and hNav1.5 channels were reduced by about 12.7 times and 4.5 times respectively, indicating that Arg3 was a key amino acid residue relative to the hKv2.1channel activity of JZTX-XI, but it is also an amino acid residue correlated with the binding activity of JZTX-XI to hNav1.5 channel. Our findings should be helpful to develop JZTX-XI into a molecular probe and drug candidate targeting to Kv2.1 potassium channel in the pancreas.

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池宇朋,邓梅春,吴远远,罗吉,容明强,张亦雅,张东裔,曾雄智,梁宋平. 敬钊毒素-XI与突变体R3A-JZTX-XI的合成、复性及其药理活性鉴定[J]. 生物工程学报, 2011, 27(6): 900-908

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  • 收稿日期:2010-09-01
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