Wititsuwannakul Rapepun, Pasitkul Piyaporn, Kanokwiroon Kamonwan, Wititsuwannakul Dhirayos
Department of Biochemistry, Faculty of Science, Prince of Songkla University, Hat-Yai, Songkhla 90112, Thailand.
Phytochemistry. 2008 Jan;69(2):339-47. doi: 10.1016/j.phytochem.2007.08.019. Epub 2007 Sep 25.
An in vitro aggregation of washed lutoid membrane and rubber particles, respectively, prepared from the bottom (lutoid) fraction and rubber layer of centrifuged fresh latex, leading to the formation of rubber coagulum necessary for a latex coagulation was demonstrated. A Triton X-100 extract of washed lutoid membrane proteins, isolated and prepared from the bottom fraction of centrifuged fresh latex was examined for its role in the latex coagulation process. It induced agglutination of rabbit erythrocytes, indicating the presence of a lectin-like protein. Hevea latex lectin-like protein (HLL) was purified to homogeneity by active chitin binding separation, followed by DEAE-Sepharose chromatography. Its M(r) analyzed by SDS-PAGE was 17 kDa, whereas that determined by gel filtration was 267 kDa. The HLL had a pI value of 7.2. Several glycoproteins were shown to inhibit the HLL-induced hemagglutination. The hemagglutinin activity of HLL was enhanced by Ca(2+). Of most interest was the finding that HLL strongly induced aggregation of the Hevea latex rubber particles (RP). This strong RP aggregation leads to latex coagulation, indicating the possibility that it is involved in the formation of the coagulum that plugs the latex vessel ends and stops the flow of latex upon tapping. In addition, the purified HLL also induced aggregation of RP taken from several other non-Hevea latex producing plants. This might indicate either a common or universal role of this lectin-like protein in RP aggregation and hence latex coagulation. This paper, for the first time, provides clear and unequivocal evidence for either a key biological role or physiological function of an endogenous latex lectin-like protein in the sequential process of latex coagulation.
分别从离心新鲜乳胶的底部(类橡胶粒子)部分和橡胶层制备的洗涤过的类橡胶粒子膜和橡胶颗粒在体外发生聚集,导致形成乳胶凝固所需的橡胶凝块,这一点已得到证实。对从离心新鲜乳胶的底部部分分离并制备的洗涤过的类橡胶粒子膜蛋白的Triton X-100提取物在乳胶凝固过程中的作用进行了研究。它诱导兔红细胞凝集,表明存在一种凝集素样蛋白。通过活性几丁质结合分离,随后进行DEAE-琼脂糖凝胶色谱法,将橡胶树乳胶凝集素样蛋白(HLL)纯化至同质。通过SDS-PAGE分析其分子量为17 kDa,而通过凝胶过滤测定的分子量为267 kDa。HLL的pI值为7.2。几种糖蛋白被证明可抑制HLL诱导的血凝反应。Ca(2+)可增强HLL的血凝活性。最有趣的发现是HLL强烈诱导橡胶树乳胶橡胶颗粒(RP)的聚集。这种强烈的RP聚集导致乳胶凝固,表明它可能参与了堵塞乳胶管末端并在割胶时阻止乳胶流动的凝块的形成。此外,纯化的HLL还诱导了从其他几种非橡胶树乳胶生产植物中提取的RP的聚集。这可能表明这种凝集素样蛋白在RP聚集以及因此在乳胶凝固中具有共同或普遍的作用。本文首次为内源性乳胶凝集素样蛋白在乳胶凝固的连续过程中的关键生物学作用或生理功能提供了明确无误的证据。