Heat shock protein expression in brain: a protective role spanning intrinsic thermal resistance and defense against neurotropic viruses

被引:14
作者
Buccellato, Matthew A.
Carsillo, Thomas
Traylor, Zachary
Oglesbee, Michael
机构
[1] Ohio State Univ, Dept Vet Biosci, Columbus, OH 43210 USA
[2] Ohio State Univ, Dept Mol Virol Immunol & Med Genet, Columbus, OH 43210 USA
来源
NEUROBIOLOGY OF HYPERTHERMIA | 2007年 / 162卷
关键词
hyperthermia; brain; synapse; hsp72; protein; heat shock proteins;
D O I
10.1016/S0079-6123(06)62019-0
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Heat shock proteins (HSPs) play an important role in the maintenance of cellular homeostasis, particularly in response to stressful conditions that adversely affect normal cellular structure and function, such as hyperthermia. A remarkable intrinsic resistance of brain to hyperthermia reflects protection mediated by constitutive and induced expression of HSPs in both neurons and glia. Induced expression underlies the phenomenon of hyperthermic pre-reconditioning, where transient, low-intensity heating induces HSPs that protect brain from subsequent insult, reflecting the prolonged half-life of HSPs. The expression and activity of HSPs that is characteristic of nervous tissue plays a role not just in the maintenance and defense of cellular viability, but also in the preservation of neuron-specific luxury functions, particularly those that support synaptic activity. In response to hyperthermia, HSPs mediate preservation or rapid recovery of synaptic function up to the point where damage in other organ systems becomes evident and life threatening. Given the ability of HSPs to enhance gene expression by neurotropic viruses, the constitutive and inducible HSP expression profiles would seem to place nervous tissues at risk. However, we present evidence that the virus-HSP relationship can promote viral clearance in animals capable of mounting effective virus-specific cell-mediated immune responses, potentially reflecting HSP-dependent increases in viral antigenic burden, immune adjuvant effects and cross-presentation of viral antigen. Thus, the protective functions of HSPs span the well-characterized intracellular roles as chaperones to those that may directly or indirectly promote immune function.
引用
收藏
页码:395 / 415
页数:21
相关论文
共 135 条
[1]   ENHANCED HUMAN T-CELL LYMPHOTROPIC VIRUS TYPE-I EXPRESSION FOLLOWING INDUCTION OF THE CELLULAR STRESS-RESPONSE [J].
ANDREWS, JM ;
OGLESBEE, MJ ;
TREVINO, AV ;
GUYOT, DJ ;
NEWBOUND, GC ;
LAIRMORE, MD .
VIROLOGY, 1995, 208 (02) :816-820
[2]   The effect of the cellular stress response on human T-lymphotropic virus type I envelope protein expression [J].
Andrews, JM ;
Oglesbee, M ;
Lairmore, MD .
JOURNAL OF GENERAL VIROLOGY, 1998, 79 :2905-2908
[3]   Constitutive expression of heat shock protein HSP25 in the central nervous system of the developing and adult mouse [J].
Armstrong, CL ;
Krueger-Naug, AM ;
Currie, RW ;
Hawkes, R .
JOURNAL OF COMPARATIVE NEUROLOGY, 2001, 434 (03) :262-274
[4]   Localization of translational components at the ultramicroscopic level at postsynaptic sites of the rat brain [J].
Asaki, C ;
Usuda, N ;
Nakazawa, A ;
Kametani, K ;
Suzuki, T .
BRAIN RESEARCH, 2003, 972 (1-2) :168-176
[5]   HYPERTHERMIA PROTECTS AGAINST LIGHT DAMAGE IN THE RAT RETINA [J].
BARBE, MF ;
TYTELL, M ;
GOWER, DJ ;
WELCH, WJ .
SCIENCE, 1988, 241 (4874) :1817-1820
[6]   Role for calcium in heat shock-mediated synaptic thermoprotection in Drosophila larvae [J].
Barclay, JW ;
Robertson, RM .
JOURNAL OF NEUROBIOLOGY, 2003, 56 (04) :360-371
[7]  
BAROUCH W, 1994, J BIOL CHEM, V269, P28563
[8]   Necrotic but not apoptotic cell death releases heat shock proteins, which deliver a partial maturation signal to dendritic cells and activate the NF-κB pathway [J].
Basu, S ;
Binder, RJ ;
Suto, R ;
Anderson, KM ;
Srivastava, PK .
INTERNATIONAL IMMUNOLOGY, 2000, 12 (11) :1539-1546
[9]   CD91 is a common receptor for heat shock proteins gp96, hsp90, hsp70, and calreticulin [J].
Basu, S ;
Binder, RJ ;
Ramalingam, T ;
Srivastava, PK .
IMMUNITY, 2001, 14 (03) :303-313
[10]   Heat shock proteins Hsp27 and Hsp32 localize to synaptic sites in the rat cerebellum following hyperthermia [J].
Bechtold, DA ;
Brown, IR .
MOLECULAR BRAIN RESEARCH, 2000, 75 (02) :309-320