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[人类癌症中溶酶体水解酶的磷酸化及其意义]

[Phosphorylation of lysosomal hydrolases in human cancer and its significance].

作者信息

Makita A, Gasa S

出版信息

Gan To Kagaku Ryoho. 1987 Jun;14(6 Pt 2):2002-9.

PMID:3606135
Abstract

Many lysosomal hydrolases in cases of human cancer were found to be accompanied by acidic variant forms together with the major hydrolase components. Such variants were found to be phosphorylated not only at their carbohydrate moiety which contributes largely to their acidic property, but also at the protein moiety. We identified a cAMP-dependent protein kinase which is responsible for phosphorylation of arylsulfatase B. The protein kinase activity toward the sulfatase was considerably higher in transplanted lung cancer than in normal lung in the presence of cAMP. The B enzyme purified from normal human liver was found to contain 0.6mol of Pi/mol of B enzyme, and protein kinase treatment added a further 1.3mol Pi to give a single phosphopeptide (X) containing phosphothreonine. On the other hand, the B1 enzyme purified from transplanted human lung cancer which had been labeled in vivo with [32P] Pi revealed at least two phosphopeptides (X and Y). Assuming that the sulfatase from liver and lung cancer possesses the same number of available phosphorylation sites, phosphorylation of site X (Thr) which is available only by deliberate phosphorylation of the native, ordinary B enzyme, appears to be cancer-associated. Increased phosphorylation of the sulfatase resulted in a maximum 50% elevation in arylsulfatase activity, followed by a decrease in the activity upon overphosphorylation, using an artificial substrate.

摘要

在人类癌症病例中,许多溶酶体水解酶被发现不仅有主要水解酶成分,还伴有酸性变体形式。这些变体不仅在对其酸性特性起主要作用的碳水化合物部分被磷酸化,在蛋白质部分也被磷酸化。我们鉴定出一种负责芳基硫酸酯酶B磷酸化的环磷酸腺苷(cAMP)依赖性蛋白激酶。在cAMP存在的情况下,移植肺癌中针对硫酸酯酶的蛋白激酶活性比正常肺中的活性高得多。从正常人肝脏纯化的B酶被发现每摩尔B酶含有0.6摩尔磷酸根离子(Pi),蛋白激酶处理又添加了1.3摩尔Pi,产生了一个含有磷酸苏氨酸的单一磷酸肽(X)。另一方面,从移植的人肺癌中纯化的B1酶,其在体内已用[32P]Pi标记,显示至少有两个磷酸肽(X和Y)。假设肝脏和肺癌中的硫酸酯酶具有相同数量的可用磷酸化位点,位点X(苏氨酸)的磷酸化似乎与癌症相关,该位点只有通过对天然普通B酶进行特意磷酸化才能实现。使用人工底物时,硫酸酯酶磷酸化增加导致芳基硫酸酯酶活性最高升高50%,过度磷酸化后活性下降。

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