THERMOPROTECTION OF A FUNCTIONAL EPITHELIUM - HEAT-STRESS EFFECTS ON TRANSEPITHELIAL TRANSPORT BY FLOUNDER RENAL TUBULE IN PRIMARY MONOLAYER-CULTURE

被引:34
作者
BROWN, MA
UPENDER, RP
HIGHTOWER, LE
RENFRO, JL
机构
[1] UNIV CONNECTICUT,CTR MARINE FRESHWATER BIOMED SCI,STORRS,CT 06269
[2] UNIV CONNECTICUT,DEPT MOLEC & CELL BIOL,STORRS,CT 06269
[3] UNIV CONNECTICUT,DEPT PHYSIOL & NEUROBIOL,STORRS,CT 06269
关键词
TELEOST KIDNEY; HEAT SHOCK; PROXIMAL TUBULE; SULFATE TRANSPORT;
D O I
10.1073/pnas.89.8.3246
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Primary monolayer cultures of winter flounder renal proximal-tubule cells were used to determine whether transepithelial transport could be protected from the damaging effects of extreme temperature by previous mild heat shock. Renal tubule epithelial cells were enzymatically dispersed and reorganized as confluent monolayer sheets on native rat tail collagen. Transepithelial electrical properties (potential difference, resistance, short-circuit current, and Na+-dependent glucose current) and unidirectional [S-35]sulfate fluxes were measured in Ussing chambers at 22-degrees-C. Examination of transepithelial electrical properties following acute 1-hr elevation of temperature over a range of 22-37-degrees-C provided the basis for the "mild" versus "severe" thermal stress protocols. Severe elevation from 22-degrees-C to 32-degrees-C for 1.5 hr followed by 1.5 hr at 22-degrees-C significantly decreased glucose current (7 +/- 0.7 to 3 +/- 0.8-mu-A/cm2) as well as net sulfate secretion [131 +/- 11 to 33 +/- 11 nmol/(cm2.hr)]. Mild heat shock of 27-degrees-C for 6 hr prior to this severe heat shock completely protected both glucose transport (6 +/- 0.7-mu-A/cm2) and sulfate flux (149 +/- 13 nmol/(cm2.hr)]. Scanning electron microscopy showed that the number of microvilli on the apical (luminal) surface of the epithelium was decreased after a 32-degrees-C heat shock. Monolayers exposed to 27-degrees-C for 6 hr prior to incubation at 32-degrees-C showed no loss of microvilli. SDS/PAGE analysis of protein patterns from the cultures showed that three classes of heat shock proteins were maximally induced at 27-degrees-C. Inhibition of protein synthesis by cycloheximide prevented the thermoprotective effect of mild heat shock. This suggests that certain renal transport functions can be protected from sublethal but debilitating thermal stress by prior mild heat shock and that heat shock proteins may play a role in this protection.
引用
收藏
页码:3246 / 3250
页数:5
相关论文
共 33 条
[1]   HYPERTHERMIA PROTECTS AGAINST LIGHT DAMAGE IN THE RAT RETINA [J].
BARBE, MF ;
TYTELL, M ;
GOWER, DJ ;
WELCH, WJ .
SCIENCE, 1988, 241 (4874) :1817-1820
[2]   RENAL PROXIMAL TUBULE OF FLOUNDER .1. PHYSIOLOGICAL-PROPERTIES [J].
BEYENBACH, KW ;
PETZEL, DH ;
CLIFF, WH .
AMERICAN JOURNAL OF PHYSIOLOGY, 1986, 250 (04) :R608-R615
[3]  
BOON-NIERMEIJER E K, 1986, International Journal of Hyperthermia, V2, P93, DOI 10.3109/02656738609019998
[4]  
CEREIJIDO M, 1982, PARACELLULAR PATHWAY, P83
[5]  
Coakley W T, 1987, Symp Soc Exp Biol, V41, P187
[6]   PRIMARY CULTURE OF FLOUNDER RENAL TUBULE CELLS - TRANS-EPITHELIAL TRANSPORT [J].
DICKMAN, KG ;
RENFRO, JL .
AMERICAN JOURNAL OF PHYSIOLOGY, 1986, 251 (03) :F424-F432
[7]  
ENAMI A, 1991, AM J PHYSIOL, V260, pF479
[8]  
GODMAN GC, 1978, CYTOCHALASINS BIOCH, P277
[9]   CONTROL OF PHOSPHATE-TRANSPORT IN FLOUNDER RENAL PROXIMAL TUBULE PRIMARY CULTURES [J].
GUPTA, A ;
RENFRO, JL .
AMERICAN JOURNAL OF PHYSIOLOGY, 1989, 256 (04) :R850-R857
[10]   HEAT-SHOCK, STRESS PROTEINS, CHAPERONES, AND PROTEOTOXICITY [J].
HIGHTOWER, LE .
CELL, 1991, 66 (02) :191-197