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利什曼原虫初始酰基转移酶 LmDAT 的 N 端结构域和糖基质定位对于脂磷壁酸的合成很重要。

The N-terminal domain and glycosomal localization of Leishmania initial acyltransferase LmDAT are important for lipophosphoglycan synthesis.

机构信息

Department of Biochemistry, Kansas State University, Manhattan, Kansas, United States of America.

出版信息

PLoS One. 2011;6(11):e27802. doi: 10.1371/journal.pone.0027802. Epub 2011 Nov 17.

Abstract

Ether glycerolipids of Leishmania major are important membrane components as well as building blocks of various virulence factors. In L. major, the first enzyme of the ether glycerolipid biosynthetic pathway, LmDAT, is an unusual, glycosomal dihydroxyacetonephosphate acyltransferase important for parasite's growth and survival during the stationary phase, synthesis of ether lipids, and virulence. The present work extends our knowledge of this important biosynthetic enzyme in parasite biology. Site-directed mutagenesis of LmDAT demonstrated that an active enzyme was critical for normal growth and survival during the stationary phase. Deletion analyses showed that the large N-terminal extension of this initial acyltransferase may be important for its stability or activity. Further, abrogation of the C-terminal glycosomal targeting signal sequence of LmDAT led to extraglycosomal localization, did not impair its enzymatic activity but affected synthesis of the ether glycerolipid-based virulence factor lipophosphoglycan. In addition, expression of this recombinant form of LmDAT in a null mutant of LmDAT did not restore normal growth and survival during the stationary phase. These results emphasize the importance of this enzyme's compartmentalization in the glycosome for the generation of lipophosphoglycan and parasite's biology.

摘要

主要利什曼原虫的醚甘油脂是重要的膜成分,也是各种毒力因子的结构单元。在主要利什曼原虫中,醚甘油磷脂生物合成途径的第一个酶,即 LmDAT,是一种不寻常的、糖质体二羟丙酮磷酸酰基转移酶,对于寄生虫在静止期的生长和存活、醚脂的合成以及毒力都很重要。本研究扩展了我们对寄生虫生物学中这一重要生物合成酶的认识。LmDAT 的定点突变表明,活性酶对于静止期的正常生长和存活至关重要。缺失分析表明,该初始酰基转移酶的大 N 端延伸可能对其稳定性或活性很重要。此外,LmDAT 的 C 末端糖质体靶向信号序列的缺失导致其定位于胞质溶胶,不损害其酶活性,但影响基于醚甘油磷脂的毒力因子脂磷壁酸的合成。此外,在 LmDAT 的缺失突变体中表达这种重组形式的 LmDAT 并不能恢复静止期的正常生长和存活。这些结果强调了该酶在糖质体中的区室化对于脂磷壁酸的产生和寄生虫生物学的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b468/3219689/4774dd47ddc5/pone.0027802.g001.jpg

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