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Unbinding of Hyaluronan Accelerates the Enzymatic Activity of Bee Hyaluronidase

机译:透明质酸的解除堵塞加速了蜂透明质酸酶的酶活性

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Hyaluronan (HA), a polymeric glycosaminoglycan ubiquitously present in higher animals, is hydrolyzed by hyaluronidases (HAases). Here, we used bee HAase as a model enzyme to study the HA-HAase interaction. Located in close proximity to the active center, a bulky surface loop, which appears to obstruct one end of the substrate binding groove, was found to be functionally involved in HA turnover. To better understand kinetic changes in substrate interaction, binding of high molecular weight HA to catalytically inactive HAase was monitored by means of quartz crystal microbalance technology. Replacement of the delimiting loop by a tetrapeptide interconnection increased the affinity for HA up to 100-fold, with a KD below 1 nm being the highest affinity among HA-binding proteins surveyed so far. The experimental data of HA-HAase interaction were further validated showing best fit to the theoretically proposed sequential two-site model. Besides the one, which had been shown previously in course of x-ray structure determination, a previously unrecognized binding site works in conjunction with an unbinding loop that facilitates liberation of hydrolyzed HA.
机译:Hyaluronan(HA)是一种在高等动物中普遍存在的聚合物糖胺聚糖,通过透明质酸酶(HAASES)水解。在这里,我们使用Bee Haase作为研究HA-HA酶相互作用的模型酶。位于有效中心的靠近,发现似乎阻碍基板绑定槽的一端的庞大表面环,在功能上涉及HA换档。为了更好地了解底物相互作用的动力学变化,通过石英晶微观技术监测高分子量HA与催化无惰性HA酶的结合。通过四肽互连更换限定环的界线增加了HA高达100倍的亲和力,KD低于1nm,是到目前为止调查的HA结合蛋白中的最高亲和力。进一步验证了HA-HA酶相互作用的实验数据,表明最适合于理论上提出的顺序双站点模型。除了先前在X射线结构确定过程中已经显示的那个之外,先前未被识别的结合位点与促进水解HA的解放的解除环结合使用。

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