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Parallel Response of Myofibrillar Contraction and Relaxation to Four Different Nucleoside Triphosphates

机译:肌原纤维收缩和松弛对四种不同核苷三磷酸的平行反应

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The Mg chelates of ITP, GTP, and UTP in addition to that of ATP were shown to be capable of causing complete relaxation of myofibrils as indicated by the complete inhibition of syneresis and the reduction of the NTPase activity to that of isolated myosin. For ITP and GTP the required concentrations were about 100 times higher than those for ATP, whereas UTP was maximally effective also in low concentrations (0.2 mM). For all NTP's the concentrations for relaxation were related to those necessary for contraction so that NTP concentrations which gave 80–90% maximal NTPase activity in the presence of Ca caused complete relaxation in the absence of Ca. Thus, these experiments do not support the view that relaxation is caused by the binding of NTP to a special inhibitory site but are quite compatible with the idea that relaxation depends on the extent to which the hydrolytic site is saturated with NTP. The Ca concentration required for contraction depends on the nature of the NTP base and its concentration; it is lower for ITP than for ATP and decreases with decreasing concentrations of ITP.
机译:除了完全抑制脱水收缩和将NTPase活性降低为分离的肌球蛋白外,ITP,GTP和UTP的镁螯合物除ATP外,还能够引起肌原纤维的完全松弛。对于ITP和GTP,所需浓度大约是ATP所需浓度的100倍,而UTP在低浓度(0.2 mM)时也有效。对于所有NTP,松弛浓度与收缩所必需的浓度有关,因此,在存在Ca的情况下,NTP的最大浓度为80-90%,NTP活性导致在不存在Ca的情况下完全松弛。因此,这些实验不支持松弛是由NTP与特定抑制位点的结合引起的观点,但与松弛取决于水解位点被NTP饱和的程度的想法完全兼容。收缩所需的Ca浓度取决于NTP碱基的性质及其浓度。对于ITP,它比ATP低,并且随着ITP浓度的降低而降低。

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