Neuron-specific conditional expression of a mitochondrially targeted fluorescent protein in mice

被引:32
作者
Chandrasekaran, Krish [1 ]
Hazelton, Julie L. [1 ]
Wang, Yu [1 ]
Fiskum, Gary [1 ]
Kristian, Tibor [1 ]
机构
[1] Univ Maryland, Sch Med, Teaching Facil5 34, Dept Anesthesiol, Baltimore, MD 21201 USA
关键词
cortex; hippocampus; neuron; mitochondria; transgenic; mice; eYFP; tetracycline; respiration; neurodegeneration; energy metabolism;
D O I
10.1523/JNEUROSCI.4191-06.2006
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Mitochondrial dysfunction contributes to the pathophysiology of both acute and chronic neurodegenerative disorders. Quantification of mitochondrial bioenergetic properties generally requires the use of isolated brain mitochondria. However, the involvement of neuronal mitochondrial dysfunction in these disorders is limited by the lack of markers, and therefore isolation procedures, that distinguish neuronal compared with astrocyte mitochondria. To address this and other issues concerning neuronal mitochondria in the CNS, transgenic mice were generated that express a fluorescent protein targeted specifically to neurons. Aneuron- specific promoter, CaMKII alpha ( calcium/ calmodulin- dependent kinase II alpha) driven tTA ( tetracycline transactivator) mice were crossed with TRE ( tetracycline responsive element) driven mitochondrial targeted enhanced yellow fluorescent protein ( eYFP) mice. Expression of eYFP in the bigenic mouse brain was observed only in neuronal mitochondria of striatum, forebrain, and hippocampus and was enhanced by the removal of the tetracycline analog doxycycline ( Dox) in the diet. The respiratory control ratio of synaptic and nonsynaptic mitochondria isolated from eYFP- expressing mice was the same as control mice, suggesting that neuronal mitochondria expressing eYFP maintain normal bioenergetic functions. More importantly, the development of Dox- inducible, neuron targeted mito/ eYFP transgenic mice offer a unique in vivo model for delineating the participation of neuronal mitochondria in neuronal survival and death.
引用
收藏
页码:13123 / 13127
页数:5
相关论文
共 30 条
[1]   A rapid method for the isolation of metabolically active mitochondria from rat neurons and astrocytes in primary culture [J].
Almeida, A ;
Medina, JM .
BRAIN RESEARCH PROTOCOLS, 1998, 2 (03) :209-214
[2]   Mitochondria, oxidants, and aging [J].
Balaban, RS ;
Nemoto, S ;
Finkel, T .
CELL, 2005, 120 (04) :483-495
[3]   Astrocyte mitochondrial mechanisms of ischemic brain injury and neuroprotection [J].
Bambrick, L ;
Kristian, T ;
Fiskum, G .
NEUROCHEMICAL RESEARCH, 2004, 29 (03) :601-608
[4]   Cyclosporin a increases mitochondrial calcium uptake capacity in cortical astrocytes but not cerebellar granule neurons [J].
Bambrick, Linda L. ;
Chandrasekaran, Krish ;
Mehrabian, Zara ;
Wright, Christopher ;
Krueger, Bruce K. ;
Fiskum, Gary .
JOURNAL OF BIOENERGETICS AND BIOMEMBRANES, 2006, 38 (01) :43-47
[5]   Mitochondria take center stage in aging and neurodegeneration [J].
Beal, MF .
ANNALS OF NEUROLOGY, 2005, 58 (04) :495-505
[6]   Chronic systemic pesticide exposure reproduces features of Parkinson's disease [J].
Betarbet, R ;
Sherer, TB ;
MacKenzie, G ;
Garcia-Osuna, M ;
Panov, AV ;
Greenamyre, JT .
NATURE NEUROSCIENCE, 2000, 3 (12) :1301-1306
[7]   NAD(P)H fluorescence transients after synaptic activity in brain slices: predominant role of mitochondrial function [J].
Brennan, Angela M. ;
Connor, John A. ;
Shuttleworth, C. William .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 2006, 26 (11) :1389-1406
[8]   Nitrogen disruption of synaptoneurosomes: an alternative method to isolate brain mitochondria [J].
Brown, MR ;
Sullivan, PG ;
Dorenbos, KA ;
Modafferi, EA ;
Geddes, JW ;
Steward, O .
JOURNAL OF NEUROSCIENCE METHODS, 2004, 137 (02) :299-303
[9]   Synaptic mitochondria are more susceptible to Ca2+ overload than nonsynaptic mitochondria [J].
Brown, MR ;
Sullivan, PG ;
Geddes, JW .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2006, 281 (17) :11658-11668
[10]   Limitations of cyclosporin A inhibition of the permeability transition in CNS mitochondria [J].
Brustovetsky, N ;
Dubinsky, JM .
JOURNAL OF NEUROSCIENCE, 2000, 20 (22) :8229-8237