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溶酶体鞘磷脂酶的活性位点:疏水基团和离子基团参与作用的证据。

The active site of lysosomal sphingomyelinase: evidence for the involvement of hydrophobic and ionic groups.

作者信息

Callahan J W, Jones C S, Davidson D J, Shankaran P

出版信息

J Neurosci Res. 1983;10(2):151-63. doi: 10.1002/jnr.490100205.

Abstract

The natural substrate for sphingomyelinase contains hydrophobic and polar moieties. In this study, we have employed pH rate studies and examined hydrophobic compounds and phosphorylated esters for their effect on sphingomyelinase activity in an attempt to determine some of the kinetic properties of this enzyme. Sphingomyelinase, purified from human placentae, undergoes noncompetitive inhibition by octylglucoside and Nonidet P-40, two nonionic detergents containing terminal octyl groups. The effect of these detergents at the hydrophobic binding site is somewhat different from that of Triton X-100, which contains an isooctyl terminal group, and this may serve to identify a structural basis for the effects. Sphingomyelinase activity is also modulated by several nucleotides. Inhibition by 5'-adenosine monophosphate (5'-AMP) is also noncompetitive. Other nucleotide monophosphates (such as 5'-uridine monophosphate (5'-UMP), 5'-cytidine monophosphate (5'-CMP), 2'-adenosine monophosphate (2'-AMP), and 3'-adenosine monophosphate (3'-AMP) and phosphorylated intermediates (such as phosphorylcholine, phosphorylethanolamine and hexose phosphates) have a lower inhibitory effect. The data suggest that the inhibition by 5'-AMP involves the combined effect of the phosphate group and the purine ring, structural requirements which may also be satisfied by bis(4-methylumbelliferyl)phosphate, a synthetic enzyme substrate. Studies of pH rate indicate that the maximal velocity for the hydrolysis of sphingomyelin is independent of pH over the range 3.5-6.2 while the Km value shows a pH dependence. The Km value is lowest from pH 4.0-5.2 and rises at pH values outside this range. The log Vmax/Km and pKm relationships, when plotted as a function of pH, have been used to identify the dissociation constants for the binding of sphingomyelin by the enzyme. These occur at pK values of 4.1 and 5.5. The activity of sphingomyelinase is also reduced when the enzyme is photooxidized in the presence of methylene blue or rose bengal and carbamylated by diethylpyrocarbonate (DEPC). These results are interpreted to show that 1). the enzyme contains a hydrophobic binding site which involves linear aliphatic moieties containing at least eight carbon atoms; 2) two ionic groups are involved in formation of the enzyme substrate complex, one of which is presumed to be the carboxylate group of aspartate or glutamate (represented by pK 4.1) and the second may be the protonated imidazolium group of histidine (represented by pK 5.5); and 3) since the maximal velocity shows no pH dependence, the interactions involving the hydrophobic and ionic groups affect only the binding of the substrate to the enzyme and formation of the enzyme-substrate complex.

摘要

鞘磷脂酶的天然底物包含疏水部分和极性部分。在本研究中,我们采用了pH速率研究,并检测了疏水化合物和磷酸化酯对鞘磷脂酶活性的影响,以试图确定该酶的一些动力学特性。从人胎盘中纯化的鞘磷脂酶受到辛基葡糖苷和诺乃洗涤剂P - 40这两种含有末端辛基的非离子洗涤剂的非竞争性抑制。这些洗涤剂在疏水结合位点的作用与含有异辛基末端基团的 Triton X - 100有所不同,这可能有助于确定这些作用的结构基础。鞘磷脂酶的活性也受到几种核苷酸的调节。5'-腺苷单磷酸(5'-AMP)的抑制作用也是非竞争性的。其他核苷酸单磷酸(如5'-尿苷单磷酸(5'-UMP)、5'-胞苷单磷酸(5'-CMP)、2'-腺苷单磷酸(2'-AMP)和3'-腺苷单磷酸(3'-AMP))以及磷酸化中间体(如磷酸胆碱、磷酸乙醇胺和己糖磷酸)的抑制作用较低。数据表明,5'-AMP的抑制作用涉及磷酸基团和嘌呤环的联合作用,双(4 - 甲基伞形酮基)磷酸酯(一种合成酶底物)也可能满足这些结构要求。pH速率研究表明,在3.5 - 6.2范围内,鞘磷脂水解的最大速度与pH无关,而Km值显示出pH依赖性。Km值在pH 4.0 - 5.2时最低,在此范围之外的pH值时升高。当将log Vmax/Km和pKm关系作为pH的函数绘制时,已用于确定酶与鞘磷脂结合的解离常数。这些解离常数出现在pK值为4.1和5.5时。当酶在亚甲蓝或孟加拉玫瑰红存在下进行光氧化以及被焦碳酸二乙酯(DEPC)氨甲酰化时,鞘磷脂酶的活性也会降低。这些结果被解释为表明:1)该酶含有一个疏水结合位点,该位点涉及至少含有八个碳原子的线性脂肪族部分;2)两个离子基团参与酶 - 底物复合物的形成,其中一个被认为是天冬氨酸或谷氨酸的羧基(由pK 4.1表示),第二个可能是组氨酸的质子化咪唑鎓基团(由pK 5.5表示);3)由于最大速度不显示pH依赖性,涉及疏水和离子基团的相互作用仅影响底物与酶的结合以及酶 - 底物复合物的形成。

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