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首页> 外文期刊>The Plant Cell >Arabidopsis 56-amino acid serine palmitoyltransferase-interacting proteins stimulate sphingolipid synthesis, are essential, and affect mycotoxin sensitivity.
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Arabidopsis 56-amino acid serine palmitoyltransferase-interacting proteins stimulate sphingolipid synthesis, are essential, and affect mycotoxin sensitivity.

机译:拟南芥56氨基酸丝氨酸棕榈酰转移酶相互作用蛋白刺激鞘脂合成,是必不可少的,并影响霉菌毒素敏感性。

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摘要

Maintenance of sphingolipid homeostasis is critical for cell growth and programmed cell death (PCD). Serine palmitoyltransferase (SPT), composed of LCB1 and LCB2 subunits, catalyzes the primary regulatory point for sphingolipid synthesis. Small subunits of SPT (ssSPT) that strongly stimulate SPT activity have been identified in mammals, but the role of ssSPT in eukaryotic cells is unclear. Candidate Arabidopsis thaliana ssSPTs, ssSPTa and ssSPTb, were identified and characterized. Expression of these 56-amino acid polypeptides in a Saccharomyces cerevisiae SPT null mutant stimulated SPT activity from the Arabidopsis LCB1/LCB2 heterodimer by >100-fold through physical interaction with LCB1/LCB2. ssSPTa transcripts were more enriched in all organs and >400-fold more abundant in pollen than ssSPTb transcripts. Accordingly, homozygous ssSPTa T-DNA mutants were not recoverable, and 50% nonviable pollen was detected in heterozygous ssspta mutants. Pollen viability was recovered by expression of wild-type ssSPTa or ssSPTb under control of the ssSPTa promoter, indicating ssSPTa and ssSPTb functional redundancy. SPT activity and sensitivity to the PCD-inducing mycotoxin fumonisin B1 (FB1) were increased by ssSPTa overexpression. Conversely, SPT activity and FB1 sensitivity were reduced in ssSPTa RNA interference lines. These results demonstrate that ssSPTs are essential for male gametophytes, are important for FB1 sensitivity, and limit sphingolipid synthesis in planta.
机译:鞘脂稳态的维持对于细胞生长和程序性细胞死亡(PCD)至关重要。由LCB1和LCB2亚基组成的丝氨酸棕榈酰转移酶(SPT)催化鞘脂合成的主要调控点。在哺乳动物中已经确定了强烈刺激SPT活性的SPT小亚基(ssSPT),但是尚不清楚ssSPT在真核细胞中的作用。鉴定并鉴定了拟南芥的ssSPTs,ssSPTa和ssSPTb。这些56个氨基酸的多肽在酿酒酵母SPT空突变体中的表达通过与LCB1 / LCB2的物理相互作用,使拟南芥属LCB1 / LCB2异二聚体的SPT活性提高了100倍以上。与ssSPTb转录物相比,ssSPTa转录物在所有器官中含量更高,花粉含量则高出400倍以上。因此,纯合的ssSPTa T-DNA突变体无法恢复,并且在杂合的ssspta突变体中检测到50%的无活力花粉。通过在ssSPTa启动子的控制下表达野生型ssSPTa或ssSPTb来恢复花粉活力,表明ssSPTa和ssSPTb功能上的冗余。 ssSPTa过表达提高了SPT活性和对PCD诱导型真菌毒素伏马菌素B 1 (FB 1 )的敏感性。相反,ssSPTa RNA干扰株的SPT活性和FB 1 敏感性降低。这些结果表明,ssSPTs对于雄配子体是必不可少的,对于FB 1 的敏感性很重要,并且限制了植物中鞘脂的合成。

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