Sigrist H, Zahler P
J Bioenerg Biomembr. 1981 Apr;13(1-2):89-101. doi: 10.1007/BF00744748.
The related probes phenylisothiocyanate and p-sulfophenylisothiocyanate possess comparable reactivity with nucleophiles but are dissimilar in their solubility characteristics. The reagents are utilized to topologically characterize the sites of covalent interaction with the Ca2+-stimulated ATPase of sarcoplasmic reticulum membranes. The hydrophobic probe phenylisothiocyanate binds covalently to the membrane-integrated protein. The extent of covalent interaction of this probe is reduced to a limited level of label incorporation by either preincubation with p-sulfophenylisothiocyanate or by exposing the labeled protein to alkaline reductive conditions. With respect to the chemical nature a dual interaction of phenylisothiocyanate is postulated. Phenylisothiocyanate modifies the Ca2+-ATPase hydrophobically. In addition, aqueous-exposed nucleophiles (cysteine thiols) interact with both arylisothiocyanates. Inhibition of the Ca2+-stimulated ATPase activity is effected by either probe.
相关探针异硫氰酸苯酯和对磺基苯异硫氰酸酯与亲核试剂具有相当的反应性,但它们的溶解性特征不同。这些试剂用于从拓扑学角度表征与肌浆网膜钙刺激ATP酶的共价相互作用位点。疏水探针异硫氰酸苯酯与膜整合蛋白共价结合。通过与对磺基苯异硫氰酸酯预孵育或使标记蛋白暴露于碱性还原条件下,该探针的共价相互作用程度会降低至有限的标记掺入水平。关于化学性质,推测异硫氰酸苯酯存在双重相互作用。异硫氰酸苯酯以疏水方式修饰钙ATP酶。此外,暴露于水相的亲核试剂(半胱氨酸硫醇)与两种芳基异硫氰酸酯相互作用。两种探针均可抑制钙刺激的ATP酶活性。