Honsho Masanori, Tanaka Megumi, Zoeller Raphael A, Fujiki Yukio
Medical Institute of Bioregulation, Kyushu University, Fukuoka, Japan.
Graduate School of Systems Life Sciences, Kyushu University, Fukuoka, Japan.
Front Cell Dev Biol. 2020 Sep 11;8:855. doi: 10.3389/fcell.2020.00855. eCollection 2020.
Plasmalogens are a subclass of ether glycerophospholipids characterized by a vinyl-ether bond at the -1 position of the glycerol backbone. Plasmalogen biosynthesis is initiated in peroxisomes. At the third step of plasmalogen synthesis, alkyl-dihydroxyacetonephosphate (DHAP) is enzymatically reduced to 1-alkyl--glycero-3-phospate by acyl/alkyl DHAP reductase (ADHAPR), whose activity is found in both peroxisomes and microsomes. We herein show that knockdown of in HeLa cells reduced the synthesis of ethanolamine plasmalogen (PlsEtn), similar to the Chinese hamster ovary cell mutant FAA.K1B deficient in ADHAPR activity. Endogenous ADHAPR and ectopically expressed FLAG-tagged ADHAPR were localized to peroxisomes and endoplasmic reticulum (ER) as a type I integral membrane protein in HeLa cells. ADHAPR targets to peroxisomes via a Pex19p-dependent class I pathway. In addition, it is also inserted into the ER via the SRP-dependent mechanism. The ADHAPR mutant lacking the N-terminal domain preferentially targets to the ER, restoring the reduced level of PlsEtn synthesis in FAA.K1B cell. In contrast, the expression of full-length ADHAPR in the mutant cells elevates the synthesis of phosphatidylethanolamine, but not PlsEtn. Taken together, these results suggest that the third step of plasmalogen synthesis is mediated by ER-localized ADHAPR.
缩醛磷脂是醚甘油磷脂的一个亚类,其特征是在甘油主链的-1位存在乙烯基醚键。缩醛磷脂的生物合成起始于过氧化物酶体。在缩醛磷脂合成的第三步,烷基二羟基丙酮磷酸酯(DHAP)被酰基/烷基DHAP还原酶(ADHAPR)酶促还原为1-烷基-sn-甘油-3-磷酸酯,该酶活性在过氧化物酶体和微粒体中均有发现。我们在此表明,在HeLa细胞中敲低ADHAPR会降低乙醇胺缩醛磷脂(PlsEtn)的合成,这与缺乏ADHAPR活性的中国仓鼠卵巢细胞突变体FAA.K1B类似。内源性ADHAPR和异位表达的FLAG标签ADHAPR在HeLa细胞中作为I型整合膜蛋白定位于过氧化物酶体和内质网(ER)。ADHAPR通过依赖Pex19p的I类途径靶向过氧化物酶体。此外,它还通过依赖SRP的机制插入内质网。缺乏N端结构域的ADHAPR突变体优先靶向内质网,恢复了FAA.K1B细胞中降低的PlsEtn合成水平。相反,在突变细胞中全长ADHAPR的表达提高了磷脂酰乙醇胺的合成,但没有提高PlsEtn的合成。综上所述,这些结果表明缩醛磷脂合成的第三步是由内质网定位的ADHAPR介导的。