在单细胞绿藻Dunaliella tertiolecta中,II型半胱天冬酶参与细胞应激,但不参与细胞死亡

IF 4.1 3区 生物学 Q2 CELL BIOLOGY
M. Mata, Armando Palma, C. García-Gómez, María López-Parages, V. Vázquez, Iván Cheng-Sánchez, F. Sarabia, F. López-Figueroa, C. Jiménez, M. Segovia
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引用次数: 6

摘要

紫外线辐射(UVR;280–400 nm)通过影响生态生理和生物地球化学过程对水生生态系统产生了巨大影响,这是人为活动产生的全球变化情景的结果。我们研究了标准杆数(P)+UVA(A)+UVB(B)即PAB对单细胞绿藻杜氏藻分子生理的影响,为期6天。我们评估了触发的UVR应激反应与元胱天蛋白酶和半胱天蛋白酶样(CL)活性之间的关系,后者是参与浮游植物细胞死亡(CD)的蛋白酶。UVR抑制细胞生长和体内叶绿素a荧光,但不会导致细胞死亡。Western印迹分析表明,在D.tertiolecta中,存在II型元酯酶(MC),并且似乎参与UVR诱导的细胞应激,但不参与暗诱导的CD。酶动力学显示,MCs报告底物RVRR、QRR、GRR、LKR、HEK和VLK的切割比WEHD、DEVD、IETD和LETD CLs底物高10倍。最低的表观米氏常数(KMap)对应于RVRR酶(37.5μM),表明RVRR底物具有高亲和力。通过使用具有不同水解靶位点的抑制剂对酶活性的抑制表明,从所有R/Kase活性来看,只有RVRRase是一种潜在的变aspase候选者。同时,酶谱和肽质量指纹分析揭示了这种Rase活性的同一性,这表明了MC可能的天然生理底物的间接证据。我们提出的证据表明,II型MCs不参与tertiolecta的CD,而是参与本研究中应用的应激辐照条件下的生存策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Type II-Metacaspases are involved in cell stress but not in cell death in the unicellular green alga Dunaliella tertiolecta
Ultraviolet radiation (UVR; 280–400 nm) has a great impact on aquatic ecosystems by affecting ecophysiological and biogeochemical processes as a consequence of the global change scenario generated by anthropogenic activities. We studied the effect of PAR (P)+UVA (A)+UVB (B) i.e. PAB, on the molecular physiology of the unicellular green alga Dunaliella tertiolecta for six days. We assessed the relationship between the triggered UVR stress response and metacaspases and caspase-like (CL)activities, which are proteases denoted to participate in cell death (CD) in phytoplankton. UVR inhibited cell growth and in vivo chlorophyll a fluorescence but did not cause cell death. Western blot analyses reflected that Type-II metacaspases (MCs) are present and appear to be involved in UVR induced-cell stress but not in dark-induced CD in D. tertiolecta. Enzyme kinetics revealed that cleavage of the MCs-reporter substrates RVRR, QRR, GRR, LKR, HEK, and VLK was 10-fold higher than WEHD, DEVD, IETD, and LETD CLs-substrates. The lowest apparent Michaelis-Menten constants (KMap) corresponded to RVRRase (37.5 μM) indicating a high affinity by the RVRR substrate. The inhibition of enzymatic activities by using inhibitors with different target sites for hydrolyses demonstrated that from all of the R/ Kase activities only RVRRase was a potential candidate for being a metacaspase. In parallel, zymograms and peptide-mass fingerprinting analyses revealed the identities of such Rase activities suggesting an indirect evidence of possible natural physiological substrates of MCs. We present evidence of type II-MCs not being involved in CD in D. tertiolecta, but rather in survival strategies under the stressful irradiance conditions applied in this study.
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来源期刊
Microbial Cell
Microbial Cell Multiple-
CiteScore
6.40
自引率
0.00%
发文量
32
审稿时长
12 weeks
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