Chinese Journal of Lasers, Volume. 41, Issue 11, 1115002(2014)
Cell Apoptosis in Yeast under Aluminum Stress Analyzed by Laser Raman Spectroscopy
[1] [1] Pina R G, Cervantes C. Microbial interactions with aluminium[J]. Biometals, 1996, 9(3): 311-316.
[2] [2] Liu X, Kim C N, Yang J, et al.. Induction of apoptotic program in cell-free extracts: Requirement for dATP and cytochrome c[J]. Cell, 1996, 86(1): 147-157.
[3] [3] Verhagen A M, Ekert P G, Pakusch M, et al.. Identification of DIABLO, a mammalian protein that promotes apoptosis by binding to and antagonizing IAP proteins[J]. Cell, 2000, 102(1): 43-53.
[4] [4] Lorenzo H K, Susin S A, Penninger J, et al.. Apoptosis inducing factor (AIF): A phylogenetically old, caspase-independent effector of cell death[J]. Cell Death Differ, 1999, 6(6): 516-524.
[5] [5] Panda S K, Yamamoto Y, Kondo H, et al.. Mitochondrial alterations related to programmed cell death in tobacco cells under aluminum stress[J]. C R Biol, 2008, 311(8): 597-610.
[6] [6] Keith D R, Eric J S, Yogesh K S, et al.. Aluminum induces oxidative stress genes in Arabidopsis thaliana[J]. Plant Physiol, 1998, 116(1): 409-418.
[7] [7] Yamamoto Y, Kobayashi Y, Rama D S, et al.. Aluminum toxicity is associated with mitochondrial dysfunction and the production of reactive oxygen species in plant cells[J]. Plant Physiol, 2002, 128(1): 63-72.
[8] [8] Boscolo P R, Menossi M, Jorge R A. Aluminum induced oxidative stress in maize[J]. Phytochemistry, 2003, 62(2): 181-189.
[9] [9] Yin L N, Mano J C, Wang S W, et al.. The involvement of lipid peroxide-derived aldehydes in aluminum toxicity of tobacco roots[J]. Plant Physiol, 2010, 152(3): 1406-1417.
[10] [10] Li Z, Xing D. Mechanistic study of mitochondria-dependent programmed cell death induced by aluminum phytotoxicity using fluorescence techniques[J]. J Exp Bot, 2010, 62(1): 331-343.
[11] [11] Nian H, Wang G, Chen L. Physiological and transcriptional analysis of the effects of aluminum stress on Cryptococcus humicola[J]. Microbiol Biotechnol, 2012, 28(6): 2319-2329.
[12] [12] Nian H J, Wang G Q, Zhao L W, et al.. Isolation of Al-tolerant yeasts and identification of their Al-tolerance characteristics[J]. J Biol Res, 2012, 18: 227-234.
[13] [13] Jin Jianling, Gao Dong, Sun Zhongdong. A simple procedure for preparation mtDNA in yeast[J]. Hereditas, 1996, 18(2): 46-48.
[14] [14] Shetty G, Kendall C, Shepherd N, et al.. Raman spectroscopy: Elucidation of biochemical changes in carcinogenesis of oesophagus[J]. Brit J Cancer, 2006, 94(10): 1460-1464.
[15] [15] Notingher I. Raman spectroscopy cell-based biosensors[J]. Sensors, 2007, 7(8): 1343-1358.
[16] [16] Xu Yiming. Raman Spectroscopy and Its Application in Structural Biology[M]. Beijing: Chemical Industry Press, 2005.
[17] [17] Chikao O, Hamaguchi H O. In vivo resonance Raman detection of ferrous cytochrome c from mitochondria of single living yeast cells[J]. Chem Lett, 2010, 39(3): 270-271.
[18] [18] Tonshin A A, Saprunova V B, Solodovnikova I M. Functional activity and ultrastructure of mitochondrial isolated from myocardial apoptotic tissue[J]. Biochemistry (Moscow), 2003, 68(8): 875-881.
[19] [19] Pully V V, Otto C. The intensity of the 1602 cm-1 band in human cells is related to mitochondrial activity[J]. J Raman Spectrosc, 2009, 40(5): 473-475.
[20] [20] Hamada K, Fujita K, Smith N I, et al.. Raman microscopy for dynamic molecular imaging of living cells[J]. J Biomed Opt, 2008, 13(4): 044027.
[21] [21] Li Zida, Lai Junzhuo, Liao Wei, et al.. Raman spectroscopic profile of ethanol fermentation in high gravity cassava starch brewing[J]. Acta Optica Sinica, 2012, 32(3): 0317001.
[22] [22] Ye Yuhuang, Chen Yang, Li Yongzeng, et al.. Discrimination of nasopharyngeal carcinoma and normal nasopharyngeal cell lines based on confocal Raman microspectroscopy[J]. Chinese J Lasers, 2012, 39(5): 0504003.
[23] [23] Liu Shupeng, Zhu Hongfei, Chen Na, et al.. Surface enhanced Raman scattering spectrum analysis of nude mouse serum with Au nanoparticles active substrate[J]. Chinese J Lasers, 2012, 39(5): 0504004.
[24] [24] Sun Meijuan, Jiang Yuling, Lai Aihua, et al.. Analysis of lipid and carotenoids in Rhodosporidium toruloides using laser tweezer Raman spectroscopy[J]. Laser & Optoelectronics Progress, 2013, 50(3): 033001.
[25] [25] Niu Liyuan, Lin Manman, Li Xue, et al.. Raman spectroscopic analysis of single white blood cell of DM mouse in vivo[J]. Laser & Optoelectronics Progress, 2012, 49(6): 063001.
[26] [26] Arends M J, Morris R G, Wyllie A H. Apoptosis. The role of the endonuclease[J]. Am J Pathol, 1990, 136(3): 593-608.
[27] [27] Tang H, Yao H, Wang G, et al.. NIR Raman spectroscopic investigation of single mitochondria trapped by optical tweezers[J]. Opt Express, 2007, 15(20): 12708-12716.
[28] [28] Chiu L D, Ando M, Hamaguchi H O. Study of the ‘Raman spectroscopic signature of life’ in mitochondria isolated from budding yeast[J]. J Raman Spectrosc, 2010, 41(1): 2-3.
[29] [29] Kakita M, Kaliaperumal V, Hamaguchi H O. Resonance Raman quantification of the redox state of cytochromes b and c in-vivo and in-vitro[J]. J Biophoton, 2012, 5(1): 20-24.
[30] [30] Jiang X, Wang X. Cytochrome c-mediated apoptosis [J]. Annu Rev Biochem, 2004, 73: 87-106.
Get Citation
Copy Citation Text
Li Jinjin, Lu Mingqian, Zhang Jingjing, Huang Shushi, Chen Limei, Nian Hongjuan. Cell Apoptosis in Yeast under Aluminum Stress Analyzed by Laser Raman Spectroscopy[J]. Chinese Journal of Lasers, 2014, 41(11): 1115002
Category: Spectroscopy
Received: Jul. 8, 2014
Accepted: --
Published Online: Oct. 8, 2014
The Author Email: Jinjin Li (175786017@qq.com)