首页> 外文期刊>Biochemistry >Characterization of the elongating alpha-D-mannosyl phosphate transferase from three species of Leishmania using synthetic acceptor substrate analogues.
【24h】

Characterization of the elongating alpha-D-mannosyl phosphate transferase from three species of Leishmania using synthetic acceptor substrate analogues.

机译:使用合成受体底物类似物表征来自三种利什曼原虫的延长α-D-甘露糖基磷酸转移酶。

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Leishmania express lipophosphoglycans and proteophosphoglycans that contain Galbeta1-4Manalpha1-P phosphosaccharide repeat structures assembled by the sequential addition of Manalpha1-P and betaGal. The synthetic acceptor substrate Galbeta1-4Manalpha1-P-decenyl and a series of analogues were used to probe Leishmania alpha-D-mannosyl phosphate transferase activity. We show that the activity detected with Galbeta1-4Manalpha1-P-decenyl is the elongating alpha-D-mannosyl phosphate transferase associated with lipophosphoglycan biosynthesis (eMPT(LPG)). Differences in the apparent K(m) values for the donor and acceptor substrates were found using L. major, L. mexicana, and L. donovani promastigote membranes, but total activity correlated with the number of lipophosphoglycan repeats. Further comparisons showed that lesion-derived L. mexicana amastigotes, that do not express lipophosphoglycan, lack eMPT(LPG) and that nondividing L. major metacyclic promastigotes contain 5-fold less eMPT(LPG) activity than dividing procyclic promastigotes. The fine specificity of promastigote eMPT(LPG) activity was determined using 24 synthetic analogues of Galbeta1-4Manalpha1-P-decenyl. The three species gave similar results: the negative charge of the phosphodiester and the C-6 hydroxyl of the alphaMan residue are essential for substrate recognition, the latter most likely acting as a hydrogen bond acceptor. The C-6' hydroxyl of the betaGal residue is required for substrate recognition as well as for catalysis. The rate of Manalpha1-P transfer declines with increasing acceptor substrate chain length. The presence of a monosaccharide substituent at the C-3 position of the terminal betaGal residue abrogates Man-P transfer, showing that chain elongation must precede side chain modification during lipophosphoglycan biosynthesis. In contrast, substitution of the penultimate phosphosaccharide repeat does not abrogate transfer but is slightly stimulatory in L. mexicana and inhibitory in L. major.
机译:利什曼原虫表达含有通过依次添加Manalpha1-P和betaGal组装而成的Galbeta1-4Manalpha1-P磷酸糖重复结构的脂蛋白聚糖和脂蛋白聚糖。合成的受体底物Galbeta1-4Manalpha1-P-decenyl和一系列类似物用于探测利什曼原虫的α-D-甘露糖基磷酸转移酶活性。我们显示,用Galbeta1-4Manalpha1-P-decenyl检测到的活性是与脂磷酸聚糖生物合成(eMPT(LPG))相关的伸长的α-D-甘露糖基磷酸转移酶。供体和受体底物的表观K(m)值的差异是使用L. major,L。mexicana和L. donovani promastigote膜发现的,但总活性与脂磷酸聚糖重复次数相关。进一步的比较表明,不表达脂质磷酸聚糖的病原体墨西哥产的无鞭毛乳杆菌缺乏eMPT(LPG),而未分裂的主要环环前鞭毛象的eMPT(LPG)活性比分裂前环的前鞭毛体少5倍。使用24个Galbeta1-4Manalpha1-P-癸烯基合成类似物确定前鞭毛体eMPT(LPG)活性的优良特异性。这三种物质给出了相似的结果:磷酸二酯的负电荷和alphaMan残基的C-6羟基对于底物识别必不可少,后者最有可能充当氢键受体。 betaGal残基的C-6'羟基是底物识别和催化所必需的。 Manalpha1-P转移的速率随着受体底物链长度的增加而降低。在末端betaGal残基的C-3位置存在一个单糖取代基,可以消除Man-P转移,这表明在脂磷聚糖生物合成过程中,链延长必须先于侧链修饰。相反,倒数第二个磷酸重复序列的取代并不能消除转移,但在墨西哥乳杆菌中具有轻微的刺激性,而在大乳杆菌中具有抑制性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号