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Identification Characterization and Synthesis of Walterospermin a Sperm Motility Activator from the Egyptian Black Snake

机译:Walterospermin的鉴定表征和合成来自埃及黑蛇的精子运动激活活体

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摘要

Animal venoms are small natural mixtures highly enriched in bioactive components. They are known to target at least two important pharmacological classes of cell surface receptors: ion channels and G protein coupled receptors. Since sperm cells express a wide variety of ion channels and membrane receptors, required for the control of cell motility and acrosome reaction, two functions that are defective in infertility issues, animal venoms should contain interesting compounds capable of modulating these two essential physiological functions. Herein, we screened for bioactive compounds from the venom of the Egyptian black snake Walterinnesia aegyptia (Wa) that possess the property to activate sperm motility in vitro from male mice OF1. Using RP-HPLC and cation exchange chromatography, we identified a new toxin of 6389.89 Da (termed walterospermin) that activates sperm motility. Walterospermin was de novo sequenced using a combination of matrix assisted laser desorption ionization time of flight mass spectrometry (MALDI-TOF/TOF MS/MS) and liquid chromatography electrospray ionization quadrupole time-of-flight mass spectrometry (LC-ESI-QTOF MS/MS) following reduction, alkylation, and enzymatic proteolytic digestion with trypsin, chymotrypsin or V8 protease. The peptide is 57 amino acid residues long and contains three disulfide bridges and was found to be identical to the previously cloned Wa Kunitz-type protease inhibitor II (Wa Kln-II) sequence. Moreover, it has strong homology with several other hitherto cloned Elapidae and Viperidae snake toxins suggesting that it belongs to a family of compounds able to regulate sperm function. The synthetic peptide shows promising activation of sperm motility from a variety of species, including humans. Its fluorescently-labelled analog predominantly marks the flagellum, a localization in agreement with a receptor that controls motility function.
机译:动物毒液是在生物活性成分中高度富集的小天然混合物。已知它们靶向至少两个细胞表面受体的重要药理类:离子通道和G蛋白偶联受体。由于精子细胞表达了各种离子通道和膜受体,所以控制细胞挥发性和胶质体反应所需的是,在不孕症问题中有缺陷的两种功能,动物毒液应含有能够调节这两个必要的生理功能的有趣化合物。在此,我们筛选来自埃及黑蛇的毒液的生物活性化合物,其具有αGegyptia(WA)的毒液,其具有从1的雄性小鼠中体外激活精子运动的性质。使用RP-HPLC和阳离子交换色谱,我们鉴定了激活精子运动的6389.89Da(称为Walterospermin)的新毒素。 Walterospermin是使用基质辅助激光解吸电离时间的组合的valterospermin使用飞行质谱(MALDI-TOF / TOF MS / MS)和液相色谱电器电离四极杆飞行时间质谱法(LC-ESI-QTOF MS /用胰蛋白酶,胰凝乳蛋白酶或V8蛋白酶减少,烷基化和酶促蛋白水解消化后,MS)。肽是57个氨基酸残基,含有三种二硫化物桥,并发现与先前克隆的Wa Kunitz型蛋白酶抑制剂II(WA KLN-II)序列相同。此外,它与其他几个迄今克隆的Elapidae和Viperidae Snake Toxins具有强烈的同源性,表明它属于能够调节精子功能的一系列化合物。合成肽显示出于各种物种,包括人类的各种物种的精子活性激活。其荧光标记的类似物主要标志着鞭毛,与控制运动功能的受体一致的本地化。

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