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The molecular characterization of the major polar tube protein gene from Encephalitozoon hellem a microsporidian parasite of humans

机译:人类微孢子虫寄生虫脑头虫的主要极管蛋白基因的分子特征

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摘要

The microsporidia are obligate intracellular protozoan parasites of increasing importance as human pathogens, which are characterized by a small resistant spore with a single polar filament that coils around the sporoplasm. When stimulated, the polar filament rapidly everts out of the spore to form a hollow polar tube through which the sporoplasm passes, thus serving as a unique mechanism of transmission. A genomic library of the human microsporidium Encephalitozoon hellem was screened using a polyclonal rabbit antibody (anti-PTP Eh55) produced to the major HPLC purified polar tube protein (PTP) of E. hellem. This antibody localized to intrasporal polar filaments and extrasporal polar tubes of E. hellem by immunogold electron microscopy confirming the polar tube specificity of the antibody. A total of 14 anti-PTP Eh55 reactive genomic clones were identified and purified. A PTP gene was identified consisting of 1362 bp coding for 453 amino acids. The N-terminus of the translated protein consists of a putative N-terminal signal sequence of 22 amino acids, which when cleaved results in a mature protein of 431 amino acids with a predicted molecular mass of 43 kDa. The protein has a high proline content (14.6%) and contains a central domain of six alternating tandem repeats of 20 amino acids. After ligation of the gene into a glutathione S-transferase (GST) expression vector, a fusion protein was produced that reacted by immunoblotting with the polar tube specific anti-PTP Eh55. The gene was present as a single copy in the genome and there was no homology with other known genes. As the polar tube is a critical structure for the transmission of this organism to a new host cell, further study of PTPs may lead to the development of new therapeutic strategies and diagnostic tests.
机译:微孢子虫是专一性的细胞内原生动物寄生虫,作为人类病原体,其特征是带有单极性丝缠绕在孢子质周围的小的抗性孢子。受到刺激时,极性细丝会迅速从孢子中外翻,形成一个中空的极管,子孢子穿过该极管,从而成为一种独特的传播机制。使用针对大肠埃希菌的主要HPLC纯化极管蛋白(PTP)产生的多克隆兔抗体(抗PTP Eh55),筛选了人类微孢子虫大脑埃希姆的基因组文库。通过免疫金电子显微镜,该抗体定位于大肠杆菌的孢子内极丝和孢子外极管,从而证实了该抗体的极管特异性。总共鉴定并纯化了14个抗PTP Eh55反应性基因组克隆。鉴定出一个PTP基因,由1362 bp的编码453个氨基酸组成。翻译蛋白质的N末端由22个氨基酸的N末端信号序列组成,当被切割时会产生431个氨基酸的成熟蛋白质,预测分子量为43 kDa。该蛋白质的脯氨酸含量高(14.6%),并包含一个由20个氨基酸组成的六个交替串联重复序列的中央结构域。将基因连接到谷胱甘肽S-转移酶(GST)表达载体后,产生了融合蛋白,该蛋白通过免疫印迹与极管特异性抗PTP Eh55反应。该基因以单拷贝形式存在于基因组中,与其他已知基因没有同源性。由于极管是该生物体向新宿主细胞传播的关键结构,因此对PTP的进一步研究可能会导致开发新的治疗策略和诊断测试。

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