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Interactions between Native and Chemically Modified Subunits of Matrix-Bound Glycogen Phosphorylase

机译:基质结合的糖原磷酸化酶的天然和化学修饰的亚基之间的相互作用

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摘要

Phospho-dephosphohybrids of rabbit skeletal muscle phosphorylase (EC 2.4.1.1; α-1,4-glucan: orthophosphate glucosyl transferase) have been prepared and stabilized by attachment to Sepharose activated by cyanogen bromide. They can be distinguished from phosphorylase a by their sensitivity to inhibition by glucose-6-phosphate and activation by adenosine 5′-monophosphate. Stable hybrids have also been formed between phosphorylase subunits containing the active cofactor pyridoxal-phosphate and inactive analogs (pyridoxalphosphate monomethylester or the corresponding reduced compounds). After complete dissociation to monomers, the Sepharose-bound phosphorylase had a residual activity of less than 3% of that of the original matrix-bound dimeric enzyme. The hybrid enzyme is composed of a potentially active subunit containing pyridoxal-phosphate and an intrinsically inactive subunit carrying the analog, and it had half the activity of the original dimeric enzyme. Thus, the interaction of the inactive subunit with matrix-bound phosphorylase monomers elicited activity in the monomers.
机译:兔骨骼肌磷酸化酶(EC 2.4.1.1;α-1,4-葡聚糖:正磷酸葡糖基转移酶)的磷酸脱磷杂交物已经制备并通过与溴化氰活化的琼脂糖结合而稳定。它们与磷酸化酶α的区别在于它们对6-磷酸葡萄糖的抑制作用和对5'-单磷酸腺苷的活化作用的敏感性。在含有活性辅因子吡ido醛磷酸酯和无活性类似物(吡rid醛磷酸单甲酯或相应的还原化合物)的磷酸化酶亚基之间也形成了稳定的杂种。与单体完全解离后,与琼脂糖结合的磷酸化酶的残留活性小于原始与基质结合的二聚酶的残留活性的3%。杂合酶由含有磷酸吡ido醛的潜在活性亚基和携带类似物的内在无活性亚基组成,其活性是原始二聚酶的一半。因此,无活性亚基与基质结合的磷酸化酶单体的相互作用引起了单体的活性。

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