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1.
Recent evidence has proved that caspase protease activities are detected in both mammals and plants during programmed cell death (PCD). The characteristics and functions of caspase-like proteases play important roles in understanding the mechanisms of PCD in plants. In this work, we report firstly the involvement of caspase-like protease activities and effects in aluminum (Al) stress in two contrasting peanut genotypes. Caspase-like activities in the root tip cells of ‘Zhonghua 2’ (Al-sensitive) and ‘99-1507’ (Al-tolerant) were detected using synthetic caspase substrates during Al-triggered PCD. Caspase-1-, -2-, -3-, -4-, -5-, -6-, -8- and -9-like proteases were found in peanut root tip cells. VDQQDase (caspase-2-like) and WEHD (caspase-5-like) were the first detected in the plants, and almost all of the caspase-like proteases were activated during Al-induced PCD, especially caspase-3-like and caspase-1-like, which was higher in ‘Zhonghua 2’ than in ‘99-1507’. The highest activity levels of caspase-3- and caspase-1-like proteases occurred 8 and 4 h after 100 µM Al treatment, respectively. Compared with 100 µM AlCl3 treatment alone, specific caspase-3 protease inhibitor Ac-DEVD-CHO inhibited the increase of caspase-3-like protease activity, Al content, Hsr203j expression, cell death and DNA fragmentation, and the decrease in root growth induced by 100 µM AlCl3 treatment, but it was more obvious in ‘Zhonghua 2’ than in ‘99-1507’. In conclusion, there were different caspase-like proteases in root tips of peanut, and caspase-3-like protease was a crucial executioner in Al-induced PCD. Its effects in the ‘Zhonghua 2’ genotype were higher than in ‘99-1507’. An improved model of the mechanism of Al-induced PCD and Al tolerance differences in different genotypes is proposed.  相似文献   
2.

Background

Taurine is a free amino acid present in high concentrations in a variety of organs of mammalians. As an antioxidant, taurine has been found to protect cells against oxidative stress, but the underlying mechanism is still unclear.

Methods

In this report, we present evidence to support the conclusion that taurine exerts a protective function against endoplasmic reticulum (ER) stress induced by H2O2 in PC 12 cells. Oxidative stress was introduced by exposure of PC 12 cells to 250 uM H2O2 for 4 hours.

Results

It was found that the cell viability of PC 12 cells decreased with an increase of H2O2 concentration ranging from approximately 76% cell viability at 100 uM H2O2 down to 18% at 500 uM H2O2. At 250 uM H2O2, cell viability was restored to 80% by taurine at 25 mM. Furthermore, H2O2 treatment also caused a marked reduction in the expression of Bcl-2 while no significant change of Bax was observed. Treatment with taurine restored the reduced expression of Bcl-2 close to the control level without any obvious effect on Bax. Furthermore, taurine was also found to suppress up-regulation of GRP78, GADD153/CHOP and Bim induced by H2O2, suggesting that taurine may also exert a protective function against oxidative stress by reducing the ER stress.

Conclusion

In summary, taurine was shown to protect PC12 cells against oxidative stress induced by H2O2. ER stress was induced by oxidative stress and can be suppressed by taurine.
  相似文献   
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兔先天性青光眼网络膜血管改变   总被引:2,自引:2,他引:0  
目的 研究青光眼对视网膜脉络膜血液循环的影响。方法 选24月龄、体重3.5~4kg的先天性青光眼大耳白兔5只(7只眼),选10只同龄大耳白兔作为对照组。另选10只2月龄、体重2kg大耳白兔前房内灌注生理盐水制成急性高眼压模型。对三组兔进行眼底照像、闪光视诱发电位(FVEP)检查,观察视网膜脉络膜血管形态和FVEP的变化。对人工急性高眼压组还进行了闪光视网膜电流图(FERG)检查。结果 先天性青光眼组与同龄对照组相比视网膜脉络膜末梢血管网明显减少;人工急性高眼压组眼压升高后首先使视网膜脉络膜末梢血管网灌流不足,随着眼压的继续升高脉络膜大血管变细,末梢血管网灌流不足加重,眼压极度升高时脉络膜大血管血流中断。同龄正常对照组的FVEP的主波P100潜伏期是(83±9)ms,先天性青光眼组则为(112±14)ms,差异有非常显著意义(P<0.01);人工急性高眼压组高眼压前为(69±5)ms,眼压60~80mm Hg时延长为(81±7)ms,眼压在100~130mmHg时FVEP波形低平,近似直线;眼压恢复正常后2hFVEP的P100潜伏期为(82±8)ms。人工急性高眼压前后FERG变化显著。结论 青光眼可以影响视网膜脉络膜血液循环;可使FVEP、FERG发生变化。  相似文献   
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以采自广西金秀县的绞股蓝种子为研究材料,对其休眠原因、休眠类型及其破眠方法进行了研究,为绞股蓝种子繁殖提供理论依据和技术支持。结果表明:(1)绞股蓝新采收成熟种子的生活力达91%,在10℃~35℃恒温和15℃/25℃变温中的发芽率均低于10%,新种子的生活力极显著大于发芽率,具有显著的休眠现象。(2)绞股蓝种皮不限制吸水,胚分化发育完全,离体胚发芽率为(78.0±4.8)%,且能够长成正常幼苗,说明绞股蓝种子的胚在离体条件下无休眠现象。(3)绞股蓝完整种子及其粉碎种子的水提液对白菜种子的萌发率、苗高及根长均有抑制作用,随水提液浓度增加抑制作用均显著增强,且粉碎种子的抑制作用较强;当粉碎种子的水提液浓度为5%时白菜种子萌发率、苗高、根长分别为18.0%、0.1cm、0.1cm,分别显著低于对照77.1%、97.3%、95.8%,说明绞股蓝种子的种皮和胚乳中存在水溶性萌发抑制物质,是绞股蓝种子休眠的主要原因。(4)GA3和6-BA不能促进绞股蓝种子萌发,低温层积对绞股蓝种子休眠的解除具有促进作用;绞股蓝种子的休眠属于生理休眠类型,休眠水平属于中间型。(5)低温干藏能够打破绞股蓝种子休眠,是绞股蓝种子破除休眠及种子保存较为理想的方式。  相似文献   
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Pan C  Prentice H  Price AL  Wu JY 《Amino acids》2012,43(2):845-855
Stroke (hypoxia) is one of the leading causes of mortality in the developed countries, and it can induce excessive glutamate release and endoplasmic reticulum (ER) stress. Taurine, as a free amino acid, present in high concentrations in a range of organs in mammals, can provide protection against multiple neurological diseases. Here, we present a study to investigate the potential protective benefits of taurine against ER stress induced by glutamate and hypoxia/reoxygenation in primary cortical neuronal cultures. We found that taurine suppresses the up-regulation of caspase-12 and GADD153/CHOP induced by hypoxia/reoxygenation, suggesting that taurine may exert a protective function against hypoxia/reoxygenation by reducing the ER stress. Moreover, taurine can down-regulate the ratio of cleaved ATF6 and full length ATF6, and p-IRE1 expression, indicating that taurine inhibits the ER stress induced by hypoxia/reoxygenation and glutamate through suppressing ATF6 and IRE1 pathways.  相似文献   
9.

Background  

Tapping panel dryness (TPD) is one of the most serious threats to natural rubber production. Although a great deal of effort has been made to study TPD in rubber tree, the molecular mechanisms underlying TPD remain poorly understood. Identification and systematical analyses of the genes associated with TPD are the prerequisites for elucidating the molecular mechanisms involved in TPD. The present study is undertaken to generate information about the genes related to TPD in rubber tree.  相似文献   
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