在高浓度组织匀浆存在的情况下,在实时震荡诱导转换反应中,重组鹿朊病毒蛋白的 N 端和 C 端参与了与 CWD 和非典型 BSE 朊病毒的反应。

IF 1.9 3区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Akio Suzuki, Kazuhei Sawada, Takeshi Yamasaki, Nathaniel D Denkers, Candace K Mathiason, Edward A Hoover, Motohiro Horiuchi
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引用次数: 0

摘要

实时震荡诱导转化(RT-QuIC)反应是检测朊病毒的一种灵敏而特异的方法。然而,组织匀浆中存在的抑制因子很容易干扰该反应。为了确定在高浓度脑组织匀浆中能检测到低浓度慢性消耗性疾病(CWD)和牛海绵状脑病(BSE)朊病毒的 RT-QuIC 条件,我们测试了各种重组朊病毒蛋白(rPrPs)的反应活性。在测试的 rPrPs 中,重组颈鹿 PrP(rCerPrP)显示出独特的反应性:rCerPrP 对 CWD 和非典型 BSE 朊病毒的反应性不受高浓度正常脑匀浆的影响。截短 N 端区域(aa 25-93)后,rCerPrP 的独特反应性消失。用 CerPrP 的相应区域替换小鼠(Mo)PrP 的 23-149 aa 部分恢复了 rCerPrP 在 RT-QuIC 中的独特反应性。将 MoPrP 的极端 C 端区域 aa 219-231 替换为 CerPrP 的相应区域,可部分地将 rCerPrP 的独特反应性赋予 rMoPrP,这表明 N 端和 C 端区域都参与其中。此外,rCerN-Mo-CerCPrP(一种由 CerPrP aa 25-153、MoPrP aa 150-218 和 CerPrP aa 223-233 组成的嵌合 PrP)显示了 N 端和 C 端区域的叠加效应。这些结果为使用 rCerPrP 检测 CWD 和非典型 BSE 朊病毒提供了机理意义,并有助于进一步改进 RT-QuIC。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Involvement of N- and C-terminal region of recombinant cervid prion protein in its reactivity to CWD and atypical BSE prions in real-time quaking-induced conversion reaction in the presence of high concentrations of tissue homogenates.

Involvement of N- and C-terminal region of recombinant cervid prion protein in its reactivity to CWD and atypical BSE prions in real-time quaking-induced conversion reaction in the presence of high concentrations of tissue homogenates.

Involvement of N- and C-terminal region of recombinant cervid prion protein in its reactivity to CWD and atypical BSE prions in real-time quaking-induced conversion reaction in the presence of high concentrations of tissue homogenates.

Involvement of N- and C-terminal region of recombinant cervid prion protein in its reactivity to CWD and atypical BSE prions in real-time quaking-induced conversion reaction in the presence of high concentrations of tissue homogenates.

The real-time quaking-induced conversion (RT-QuIC) reaction is a sensitive and specific method for detecting prions. However, inhibitory factors present in tissue homogenates can easily interfere with this reaction. To identify the RT-QuIC condition under which low levels of chronic wasting disease (CWD) and bovine spongiform encephalopathy (BSE) prions can be detected in the presence of high concentrations of brain tissue homogenates, reactivities of various recombinant prion proteins (rPrPs) were tested. Among the tested rPrPs, recombinant cervid PrP (rCerPrP) showed a unique reactivity: the reactivity of rCerPrP to CWD and atypical BSE prions was not highly affected by high concentrations of normal brain homogenates. The unique reactivity of rCerPrP disappeared when the N-terminal region (aa 25-93) was truncated. Replacement of aa 23-149 of mouse (Mo) PrP with the corresponding region of CerPrP partially restored the unique reactivity of rCerPrP in RT-QuIC. Replacement of the extreme C-terminal region of MoPrP aa 219-231 to the corresponding region of CerPrP partially conferred the unique reactivity of rCerPrP to rMoPrP, suggesting the involvement of both N- and C-terminal regions. Additionally, rCerN-Mo-CerCPrP, a chimeric PrP comprising CerPrP aa 25-153, MoPrP aa 150-218, and CerPrP aa 223-233, showed an additive effect of the N- and C-terminal regions. These results provide a mechanistic implication for detecting CWD and atypical BSE prions using rCerPrP and are useful for further improvements of RT-QuIC.

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来源期刊
Prion
Prion 生物-生化与分子生物学
CiteScore
5.20
自引率
4.30%
发文量
13
审稿时长
6-12 weeks
期刊介绍: Prion is the first international peer-reviewed open access journal to focus exclusively on protein folding and misfolding, protein assembly disorders, protein-based and structural inheritance. The goal is to foster communication and rapid exchange of information through timely publication of important results using traditional as well as electronic formats. The overriding criteria for publication in Prion are originality, scientific merit and general interest.
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