首页> 外文期刊>Bioorganic and medicinal chemistry >Solid-phase synthesis, mass spectrometric analysis of the zinc-folding, and phorbol ester-binding studies of the 116-mer peptide containing the tandem cysteine-rich C1 domains of protein kinase C gamma.
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Solid-phase synthesis, mass spectrometric analysis of the zinc-folding, and phorbol ester-binding studies of the 116-mer peptide containing the tandem cysteine-rich C1 domains of protein kinase C gamma.

机译:固相合成,锌折叠的质谱分析和116-mer肽的佛波醇酯结合研究,这些肽含有蛋白激酶Cγ的富含半胱氨酸的串联C1域。

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摘要

Tumor-promoting phorbol esters activate protein kinase C (PKC) isozymes by binding to the zinc-finger like cysteine-rich domains in the N-terminal regulatory region. Our recent studies have revealed that only PKCgamma has two high affinity phorbol ester-binding domains, providing a structural blueprint for the rational design of PKCgamma-selective modulators for the treatment of neuropathic pain. To extend this approach, the 116-mer peptide containing the double cysteine-rich motifs of PKCgamma (gamma-C1A-C1B) has been synthesized for the first time using an Fmoc-solid phase strategy with a stepwise chain elongation. This peptide was purified by the reversed phase HPLC to give satisfactory mass data (MALDI-TOF-MS and ESI-TOF-MS). The peptide was successfully folded by zinc treatment and the folded peptide was analyzed intact under neutral conditions by ESI-TOF-MS. The multiple charge mass envelopes shifted to those of the lower mass charge state by addition of 4 molar equiv. ZnCl2, suggesting that gamma-C1A-C1B preserves some higher order structure by the zinc folding. Moreover, the mass spectrum of the zinc-folded peptide in the presence of EDTA clearly showed that gamma-C1A-C1B coordinates exactly four atoms of zinc. This zinc stoichiometry is identical to that of native PKCgamma. Scatchard analysis of the zinc-folded peptide revealed two binding sites of distinctly different affinities (Kd=6.0 +/- 1.5 and 47.0 +/- 6.6 nM) comparable to those reported by Quest and Bell for the GST fusion protein of gamma-C1A-C1B prepared by DNA recombination. These results indicate that gamma-C1A-C1B serves as an effective surrogate for native PKCgamma for the study of the structural characteristics of the binding recognition event and the design, discovery, and development of new PKCgamma-selective modulators.
机译:促肿瘤的佛波酯通过结合N末端调节区中富含锌指的半胱氨酸结构域来激活蛋白激酶C(PKC)同工酶。我们最近的研究表明,只有PKCγ具有两个高亲和力佛波酯结合结构域,为合理设计PKCγ选择性调节剂治疗神经性疼痛提供了结构蓝图。为了扩展这种方法,使用具有逐步链延长的Fmoc-固相策略首次合成了含有PKCgamma的富含半胱氨酸的双基序的116-mer肽(γ-C1A-C1B)。该肽通过反相HPLC纯化,得到令人满意的质量数据(MALDI-TOF-MS和ESI-TOF-MS)。通过锌处理成功折叠了肽,并在中性条件下通过ESI-TOF-MS分析了折叠的肽的完整性。通过添加4摩尔当量,多个电荷质量包络线转变为较低质量电荷状态的包络线。 ZnCl2,表明γ-C1A-C1B通过锌折叠保留了一些更高阶的结构。此外,在EDTA存在下锌折叠肽的质谱清楚地表明,γ-C1A-C1B正好与锌的四个原子配位。该锌化学计量与天然PKCγ相同。锌折叠肽的Scatchard分析表明,两个结合位点的亲和力明显不同(Kd = 6.0 +/- 1.5和47.0 +/- 6.6 nM),与Quest和Bell报道的GST-C1A-GST融合蛋白相当通过DNA重组制备的C1B。这些结果表明,γ-C1A-C1B可作为天然PKCgamma的有效替代物,用于研究结合识别事件的结构特征以及新PKCgamma选择性调节剂的设计,发现和开发。

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