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Characterisation of the fibrinogenolytic properties of the buccal gland secretion from Lampetra japonica

机译:兰佩特兰颊颊分泌物的纤维蛋白原分解特性的表征

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Lampetra japonica is representative of the ancient cyclostomota class of animals, and its buccal gland secretion (called lamphredin) is known to act as an anticoagulant. In this study, it was observed by both native-PAGE and SDS-PAGE that the secretion mainly contained two protein bands, buccal gland secretion protein-1 (BGSP-1, 159,909 Da) and buccal gland secretion protein-2 (BGSP-2, 25,660 Da). The N-terminal amino acids of BGSP-1 (EAESF QNLKT RICGG LNGLG) and BGSP-2 (TSVND WKLLD TKLSA NRKVI) were sequenced. Using a Sepha-dex G-75 column, we isolated BGSP-1, BGSP-2 and small peptides from the buccal gland secretion, but found only BGSP-1 showed fibrinogenolytic activity. BGSP-1 and lamphredin were found to rapidly degrade the alpha chain of human fibrinogen, slowly degrade the beta chain and hardly degrade the gamma chain. BGSP-1 and lamphredin showed a similar map by SDS-PAGE for the degradation of fibrinogen by cleavage at Ala_(10)-Glu_(11) and His_(368)-Ser_(369). BGSP-1 was also found to hydrolyze neuronal protein tau at Glu_(12)-Asp_(13) and Gln_(244)-Thr_(245). Further study showed that lamphredin and BGSP-1 were inactivated in the presence of a metal chelating agent EDTA. However, addition of Ca~(2+) or Mg~(2+) but not Zn~(2+) restored the fibrinogenolytic activity. This suggests that BGSP-1 acts in the buccal gland as a metalloproteinase with a broad substrate specificity. Furthermore, the secretion showed cytolytic properties towards human SH-SY5Y and HeLa cells in culture, and lamphredin at a 50-fold dilution induced cell death.
机译:Lampetra japonica是古代动物的气孔类动物的代表,已知其颊腺分泌物(称为Lamphredin)可作为抗凝剂。在本研究中,通过native-PAGE和SDS-PAGE观察到,分泌物主要包含两个蛋白带,颊腺分泌蛋白-1(BGSP-1,159,909 Da)和颊腺分泌蛋白-2(BGSP-2) ,25,660 Da)。对BGSP-1(EAESF QNLKT RICGG LNGLG)和BGSP-2(TSVND WKLLD TKLSA NRKVI)的N端氨基酸进行了测序。使用Sepha-dex G-75色谱柱,我们从颊腺分泌物中分离出BGSP-1,BGSP-2和小肽,但发现只有BGSP-1表现出纤维蛋白原分解活性。发现BGSP-1和Lamphredin可迅速降解人纤维蛋白原的α链,缓慢降解β链,而几乎不降解γ链。 BGSP-1和Lamphredin在SDS-PAGE上显示出相似的图谱,表明通过在Ala_(10)-Glu_(11)和His_(368)-Ser_(369)处的裂解来降解纤维蛋白原。还发现BGSP-1水解Glu_(12)-Asp_(13)和Gln_(244)-Thr_(245)的神经元蛋白tau。进一步的研究表明,在金属螯合剂EDTA的存在下,Lamphredin和BGSP-1被灭活。然而,添加Ca〜(2+)或Mg〜(2+)而不添加Zn〜(2+)可以恢复纤维蛋白原分解活性。这表明BGSP-1在颊腺中作为具有广泛底物特异性的金属蛋白酶起作用。此外,该分泌物在培养中显示出对人SH-SY5Y和HeLa细胞的溶细胞特性,并且以50倍稀释的兰佩德定诱导细胞死亡。

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