Regulation of osteoclastic bone resorption by glucose

被引:103
作者
Williams, JP
Blair, HC
McDonald, JM
McKenna, MA
Jordan, SE
Williford, J
Hardy, RW
机构
[1] UNIV ALABAMA,DEPT PATHOL,BIRMINGHAM,AL 35294
[2] VET AFFAIRS MED CTR,LAB SERV,BIRMINGHAM,AL 35294
关键词
D O I
10.1006/bbrc.1997.6795
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Osteoclasts degrade bone by pumping molar quantities of HCI to dissolve the calcium salts of bone, an energy intensive process evidently supported by abundant mitochondria. This is the first study to directly examine the ability of various metabolites to serve as potential energy sources for osteoclastic bone resorption. Glucose, and to a lesser extent lactate, supported osteoclastic bone degradation, However, fatty acids (palmitate, myristate and stearate), essential amino acids plus 20 mM alanine, or ketone bodies (acetoacetate, beta-hydroxybutyrate and alpha-ketoglutarate) did not support bone degradation. Resorption declined to 10-30% of glucose controls when fatty acids or ketoacids were substituted for glucose. Resorption was glucose concentration dependent, with maximal activity at similar to 7 mM (K-M similar to 3 mM). Glucose transport was linear for similar to 15 minutes, specific for D-glucose, and inhibited by cytochalasin B. Osteoclasts cultured on bone transported glucose at almost twice the rate of those off bone (V-max, 23 versus 13 nmols/ mg/min, respectively) and medium acid accumulation paralleled glucose uptake, while the K-M was unchanged. We conclude that glucose is the principal energy source required for bone degradation. Further, characteristics of glucose transport are consistent with the hypothesis that fluctuations in serum glucose concentration are an important component in regulation of osteoclastic bone degradation. (C) 1997 Academic Press.
引用
收藏
页码:646 / 651
页数:6
相关论文
共 32 条
[1]   ENZYME HISTOCHEMICAL-CHARACTERISTICS OF HUMAN AND KITTEN ODONTOCLASTS AND KITTEN OSTEOCLASTS - COMPARATIVE-STUDY USING WHOLE CELLS [J].
ADDISON, WC .
HISTOCHEMICAL JOURNAL, 1979, 11 (06) :719-735
[2]  
ALMAWI WY, 1991, J IMMUNOL, V146, P3523
[3]   GENERATION OF AVIAN CELLS RESEMBLING OSTEOCLASTS FROM MONONUCLEAR PHAGOCYTES [J].
ALVAREZ, JI ;
TEITELBAUM, SL ;
BLAIR, HC ;
GREENFIELD, EM ;
ATHANASOU, NA ;
ROSS, FP .
ENDOCRINOLOGY, 1991, 128 (05) :2324-2335
[4]   POLARIZED SECRETION OF LYSOSOMAL-ENZYMES - CO-DISTRIBUTION OF CATION-INDEPENDENT MANNOSE-6-PHOSPHATE RECEPTORS AND LYSOSOMAL-ENZYMES ALONG THE OSTEOCLAST EXOCYTIC PATHWAY [J].
BARON, R ;
NEFF, L ;
BROWN, W ;
COURTOY, PJ ;
LOUVARD, D ;
FARQUHAR, MG .
JOURNAL OF CELL BIOLOGY, 1988, 106 (06) :1863-1872
[5]  
Blair Harry C., 1992, P259
[6]   RECEPTOR-MEDIATED UPTAKE OF A MANNOSE-6-PHOSPHATE BEARING GLYCOPROTEIN BY ISOLATED CHICKEN OSTEOCLASTS [J].
BLAIR, HC ;
TEITELBAUM, SL ;
SCHIMKE, PA ;
KONSEK, JD ;
KOZIOL, CM ;
SCHLESINGER, PH .
JOURNAL OF CELLULAR PHYSIOLOGY, 1988, 137 (03) :476-482
[7]   ISOLATED OSTEOCLASTS RESORB THE ORGANIC AND INORGANIC COMPONENTS OF BONE [J].
BLAIR, HC ;
KAHN, AJ ;
CROUCH, EC ;
JEFFREY, JJ ;
TEITELBAUM, SL .
JOURNAL OF CELL BIOLOGY, 1986, 102 (04) :1164-1172
[8]  
BLAIR HC, 1993, CLIN ORTHOP RELAT R, V294, P7
[9]   ACID AND BASE EFFECTS ON AVIAN OSTEOCLAST ACTIVITY [J].
CARANO, A ;
SCHLESINGER, PH ;
ATHANASOU, NA ;
TEITELBAUM, SL ;
BLAIR, HC .
AMERICAN JOURNAL OF PHYSIOLOGY, 1993, 264 (03) :C694-C701
[10]  
CHEN RF, 1967, J BIOL CHEM, V242, P173