2 STEP MECHANISM OF PHOSPHATE RELEASE AND THE MECHANISM OF FORCE GENERATION IN CHEMICALLY SKINNED FIBERS OF RABBIT PSOAS MUSCLE

被引:163
作者
KAWAI, M [1 ]
HALVORSON, HR [1 ]
机构
[1] HENRY FORD HOSP,DIV PHYS BIOCHEM,DETROIT,MI 48202
关键词
D O I
10.1016/S0006-3495(91)82227-5
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
The elementary steps of contraction in rabbit fast twitch muscle fibers were investigated with particular emphasis on the mechanism of phosphate (Pi) binding/release, the mechanism of force generation, and the relation between them. We monitor the rate constant 2-pi-b of a macroscopic exponential process (B) by imposing sinusoidal length oscillations. We find that the plot of 2-pi-b vs. Pi concentration is curved. From this observation we infer that Pi released is a two step phenomenon: an isomerization followed by the actual Pi release. OUr results fit well to the kinetic scheme: [GRAPHICS] where A = actin, M = myosin, S = MgATP (substrate), D = MgADP, P = phosphate, and Det is a composite of all the detached and weakly attached states. For our data to be consistent with this scheme, it is also necessary that step 4 (isomerization) is observed in process (B). By fitting this scheme to our data, we obtained the following kinetic constants: k4 = 56 s-1, k-4 = 129 s-1, and K5 = 0.069 mM-1, assuming that K2 = 4.9. Experiments were performed at pCa 4.82, pH 7.00, MgATP 5 mM, free ATP 5 mM, ionic strength 200 mM in K propionate medium, and at 20-degrees-C. Based on these kinetic constants, we calculated the probability of each cross-bridge state as a function of Pi, and correlated this with the isometric tension. Our results indicate that all attached cross-bridges support equal amount of tension. From this, we infer that the force is generated at step 4. Detailed balance indicates that 50-65% of the free energy available from ATP hydrolysis is trasformed to work at this step. For our data to be consistent with the above scheme, step 6 must be the slowest step of the cross-bridge cycle (the rate limiting step). Further, AM*D is a distinctly different state from the AMD state that is formed by adding D to the bathing solution. From our earlier ATP hydrolysis data, we estimated k6 to be 9 s-1.
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页码:329 / 342
页数:14
相关论文
共 57 条
[1]   EFFECTS OF PHOSPHATE ON THE CONTRACTILE PROPERTIES OF FAST AND SLOW MUSCLE-FIBERS FROM AN ANTARCTIC FISH [J].
ALTRINGHAM, JD ;
JOHNSTON, IA .
JOURNAL OF PHYSIOLOGY-LONDON, 1985, 368 (NOV) :491-500
[2]  
ANDREWS, 1988, BIOPHYS J, V53, pA570
[3]  
ANDREWS M A, 1989, Biophysical Journal, V55, p266A
[4]   STRUCTURE AND FUNCTION OF 2 HEADS OF MYOSIN MOLECULE .6. ATP HYDROLYSIS, SHORTENING, AND TENSION DEVELOPMENT OF MYOFIBRILS [J].
ARATA, T ;
MUKOHATA, Y ;
TONOMURA, Y .
JOURNAL OF BIOCHEMISTRY, 1977, 82 (03) :801-812
[5]   CHARACTERIZATION OF MYOSIN-PRODUCT COMPLEXES AND OF PRODUCT-RELEASE STEPS DURING MAGNESIUM ION-DEPENDENT ADENOSINE-TRIPHOSPHATASE REACTION [J].
BAGSHAW, CR ;
TRENTHAM, DR .
BIOCHEMICAL JOURNAL, 1974, 141 (02) :331-349
[6]   DEMEMBRANATED MUSCLE-FIBERS CATALYZE A MORE RAPID EXCHANGE BETWEEN PHOSPHATE AND ADENOSINE-TRIPHOSPHATE THAN ACTOMYOSIN SUBFRAGMENT-1 [J].
BOWATER, R ;
SLEEP, J .
BIOCHEMISTRY, 1988, 27 (14) :5314-5323
[7]   REGULATION OF TENSION IN SKINNED MUSCLE-FIBERS - EFFECT OF CROSS-BRIDGE KINETICS ON APPARENT CA-2+ SENSITIVITY [J].
BRANDT, PW ;
COX, RN ;
KAWAI, M ;
ROBINSON, T .
JOURNAL OF GENERAL PHYSIOLOGY, 1982, 79 (06) :997-1016
[8]   MUSCLE FORCE AND STIFFNESS DURING ACTIVATION AND RELAXATION - IMPLICATIONS FOR THE ACTOMYOSIN ATPASE [J].
BROZOVICH, FV ;
YATES, LD ;
GORDON, AM .
JOURNAL OF GENERAL PHYSIOLOGY, 1988, 91 (03) :399-420
[9]  
CHALOVICH JM, 1982, J BIOL CHEM, V257, P2432
[10]   THE EFFECTS OF ADP AND PHOSPHATE ON THE CONTRACTION OF MUSCLE-FIBERS [J].
COOKE, R ;
PATE, E .
BIOPHYSICAL JOURNAL, 1985, 48 (05) :789-798