Patil Rohan A, Lenka Sangram K, Normanly Jennifer, Walker Elsbeth L, Roberts Susan C
Department of Chemical Engineering, Institute for Cellular Engineering, University of Massachusetts, 686 North Pleasant Street, Amherst, MA, 01003, USA.
Plant Cell Rep. 2014 Sep;33(9):1479-92. doi: 10.1007/s00299-014-1632-5. Epub 2014 May 16.
Methyl jasmonate elicitation of Taxus cultures enhances paclitaxel accumulation, but represses growth by inhibition of cell cycle progression. Growth repression is evident both at the culture level and transcriptional level. Methyl jasmonate (MeJA) elicitation is an effective strategy to induce and enhance synthesis of the anticancer agent paclitaxel (Taxol(®)) in Taxus cell suspension cultures; however, concurrent decreases in growth are often observed, which is problematic for large-scale bioprocessing. Here, increased accumulation of paclitaxel in Taxus cuspidata suspension cultures with MeJA elicitation was accompanied by a concomitant decrease in cell growth, evident within the first 3 days post-elicitation. Both MeJA-elicited and mock-elicited cultures exhibited similar viability with no apoptosis up to day 16 and day 24 of the cell culture period, respectively, suggesting that growth repression is not attributable to cell death. Flow cytometric analyses demonstrated that MeJA perturbed cell cycle progression of asynchronously dividing Taxus cells. MeJA slowed down cell cycle progression, impaired the G1/S transition as observed by an increase in G0/G1 phase cells, and decreased the number of actively dividing cells. Through a combination of deep sequencing and gene expression analyses, the expression status of Taxus cell cycle-associated genes correlated with observations at the culture level. Results from this study provide valuable insight into the mechanisms governing MeJA perception and subsequent events leading to repression of Taxus cell growth.
茉莉酸甲酯诱导红豆杉培养物可增强紫杉醇的积累,但通过抑制细胞周期进程来抑制生长。在培养水平和转录水平上,生长抑制都很明显。茉莉酸甲酯(MeJA)诱导是在红豆杉细胞悬浮培养物中诱导和增强抗癌药物紫杉醇(Taxol®)合成的有效策略;然而,常常会同时观察到生长的下降,这对于大规模生物加工来说是个问题。在这里,用MeJA诱导东北红豆杉悬浮培养物中紫杉醇积累的增加伴随着细胞生长的相应减少,这在诱导后的前3天内很明显。在细胞培养期的第16天和第24天,MeJA诱导组和模拟诱导组的细胞活力相似,均未出现凋亡,这表明生长抑制并非归因于细胞死亡。流式细胞术分析表明,MeJA扰乱了同步分裂的红豆杉细胞的细胞周期进程。MeJA减缓了细胞周期进程,通过G0/G1期细胞增加观察到其损害了G1/S期转换,并减少了活跃分裂细胞的数量。通过深度测序和基因表达分析相结合,红豆杉细胞周期相关基因的表达状态与在培养水平上的观察结果相关。本研究结果为调控MeJA感知以及随后导致红豆杉细胞生长抑制的事件的机制提供了有价值的见解。