Fischer G, Jatzkewitz H
Adv Exp Med Biol. 1978;101:573-82. doi: 10.1007/978-1-4615-9071-2_53.
The activator of sulphatase A is necessary for the enzymic degradation of sulphatides to cerebrosides at ionic concentrations in the physiological range (1). Activation is probably due to the reversible formation of a one-to-one complex between activator and sulphatides (1,2). Formation of this complex is partly inhibited by cerebrosides due to competitive binding (2), as well as by phospholipids (e.g. lecithin or phosphatidylserine). Inhibition of the complex formation between activator and sulphatides by cerebrosides and phosphatidyl-serine depends on the concentration of the lipids and is of the same order of magnitude as the inhibition (by these lipids) of the enzymic degradation of sulphatides in the presence of activator (1). Moreover the degradation rate of sulphatides increases with the concentration of activator-sulphatide complex in the reaction mixture (1) indicating that the activator-sulphatide complex is the substrate for the enzyme in the degradation of sulphatides by sulphatase A.
在生理范围内的离子浓度下,硫酸酯酶A的激活剂对于硫脂酶解为脑苷脂是必需的(1)。激活可能是由于激活剂与硫脂之间可逆形成了一对一的复合物(1,2)。由于竞争性结合(2),以及磷脂(如卵磷脂或磷脂酰丝氨酸),脑苷脂会部分抑制这种复合物的形成。脑苷脂和磷脂酰丝氨酸对激活剂与硫脂之间复合物形成的抑制作用取决于脂质的浓度,并且与(这些脂质)在激活剂存在下对硫脂酶解的抑制作用处于同一数量级(1)。此外,硫脂的降解速率随着反应混合物中激活剂 - 硫脂复合物浓度的增加而增加(1),这表明激活剂 - 硫脂复合物是硫酸酯酶A降解硫脂时酶的底物。