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嘌呤对人胞质低分子量酸性磷酸酶(ACP1)快慢同工酶的活性调节

Activity modulation of the fast and slow isozymes of human cytosolic low-molecular-weight acid phosphatase (ACP1) by purines.

作者信息

Dissing J, Rangaard B, Christensen U

机构信息

Institute of Forensic Genetics, University of Copenhagen, Denmark.

出版信息

Biochim Biophys Acta. 1993 Mar 26;1162(3):275-82. doi: 10.1016/0167-4838(93)90291-x.

Abstract

The activity modulation of homogeneous isozymes of the human cytosolic M(r) 18,000 acid phosphatase (ACP1) by purines has been investigated. A pronounced difference in the response of fast and slow isozymes of the same genetic type was observed, while identical properties were found for fast isozymes encoded by different alleles (ACP1 X A, B and C), as well as for the corresponding slow isozymes. The catalytic rate constant (kc) of the fast isozymes was increased 5.1-fold by hypoxanthine and decreased 40% by adenine, while the kc of the slow isozymes was unaffected by hypoxanthine but increased 4.6-fold by adenine. This finding and the genetically-determined differences in the relative quantities of the fast and slow isozymes account for the well-known phenotypic differences in activity modulation. The kinetic results strongly indicate that the effector binds to the free enzyme, as well as to the enzyme-substrate complex. Activating effectors showed a higher affinity for the free enzyme than for the enzyme-substrate complex, while the reverse was true with the inhibitor. The results exclude the possibility that effector and substrate bind to the same site of the enzyme; parasteric binding to adjacent sites is suggested.

摘要

对嘌呤对人胞质18,000相对分子质量酸性磷酸酶(ACP1)同质性同工酶活性的调节作用进行了研究。观察到相同遗传类型的快、慢同工酶在反应上存在显著差异,而不同等位基因(ACP1 X A、B和C)编码的快同工酶以及相应的慢同工酶具有相同的性质。次黄嘌呤使快同工酶的催化速率常数(kc)增加5.1倍,腺嘌呤使其降低40%,而慢同工酶的kc不受次黄嘌呤影响,但腺嘌呤使其增加4.6倍。这一发现以及快、慢同工酶相对量的遗传决定差异解释了活性调节中众所周知的表型差异。动力学结果有力地表明,效应物既与游离酶结合,也与酶-底物复合物结合。激活效应物对游离酶的亲和力高于对酶-底物复合物的亲和力,而抑制剂的情况则相反。结果排除了效应物和底物结合到酶的同一位点的可能性;提示为相邻位点的旁位结合。

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