Cain B D, Donohue T J, Kaplan S
J Bacteriol. 1982 Nov;152(2):607-15. doi: 10.1128/jb.152.2.607-615.1982.
The accumulation of N-acylphosphatidylserine (NAPS) in response to the inclusion of Tris in the growth medium of Rhodopseudomonas sphaeroides strain M29-5 has been examined. In the accompanying paper (Donohue et al., J. Bacteriol. 152:000--000, 1982), we show that in response to Tris, NAPS accumulated to as much as 40% of the total cellular phospholipid content. NAPS accumulation began immediately upon addition of Tris and was reflected as an abrupt 12-fold increase in the apparent rate of NAPS accumulation. We suggest that Tris altered the flow of metabolites through a preexisting and previously unknown metabolic pathway. NAPS accumulation ceased immediately upon the removal of Tris; however, accumulated NAPS remained largely metabolically stable. Importantly, under conditions in which NAPS was not accumulated, the intracytoplasmic membrane was shown to be virtually devoid of newly synthesized NAPS. The significance of this observation is discussed in terms of its physiological implications on phospholipid transfer and membrane biogenesis in R. sphaeroides.
已对球形红假单胞菌M29 - 5菌株生长培养基中添加Tris后N - 酰基磷脂酰丝氨酸(NAPS)的积累情况进行了研究。在随附论文(多诺霍等人,《细菌学杂志》152:000 - 000,1982年)中,我们表明,响应Tris,NAPS积累量高达细胞总磷脂含量的40%。添加Tris后NAPS立即开始积累,表现为NAPS积累表观速率突然增加12倍。我们认为Tris改变了代谢物通过一条先前存在但未知的代谢途径的流动。去除Tris后NAPS积累立即停止;然而,积累的NAPS在很大程度上仍保持代谢稳定。重要的是,在未积累NAPS的条件下,显示胞内膜几乎没有新合成的NAPS。从其对球形红假单胞菌磷脂转移和膜生物发生的生理影响方面讨论了这一观察结果的意义。