Teague W M, Pettit F H, Wu T L, Silberman S R, Reed L J
Biochemistry. 1982 Oct 26;21(22):5585-92. doi: 10.1021/bi00265a031.
Pyruvate dehydrogenase phosphatase was purified to apparent homogeneity from bovine heart and kidney mitochondria. The phosphatase has a sedimentation coefficient (S20,w) of about 7.4 S and a molecular weight (Mr) of about 150 000 as determined by sedimentation equilibrium and by gel-permeation chromatography. The phosphatase consists of two subunits with molecular weights of about 97 000 and 50 000 as estimated by sodium dodecyl sulfate--polyacrylamide gel electrophoresis. Phosphatase activity resides in the Mr 50 000 subunit, which is sensitive to proteolysis. The phosphatase contains approximately 1 mol of flavin adenine dinucleotide (FAD) per mol of protein of Mr 150 000. FAD is apparently associated with the Mr 97 000 subunit. The function of this subunit remains to be established. The phosphatase binds 1 mol of Ca2+ per mol of enzyme of Mr 150 000 at pH 7.0, with a dissociation constant (Kd) of about 35 microM as determined by flow dialysis. Use of ethylene glycol bis(beta-aminoethyl ether)-N,N,N',N'-tetraacetate (EGTA) at pH 7.6 in conjunction with flow dialysis gave a Kd value for Ca2+ of about 8 microM. In the presence of both the phosphatase and the dihydrolipoyl transacetylase (E2) core of the pyruvate dehydrogenase complex, two equivalent and apparently non-interacting CA2+-binding sites were detected per unit of Mr 150 000, with a Kd value of about 24 microM in the absence and about 5 microM in the presence of EGTA. In the presence of 0.2 M KCl, which inhibits phosphatase activity about 95%, the phosphatase exhibited only one Ca2+-binding site, even in the presence of E2. The phosphatase apparently possesses an "intrinsic" Ca2+-binding site, and a second Ca2+-binding site is produced in the presence of E2. The second site is apparently altered by increasing the ionic strength. It is proposed that the second site may be at the interface between the phosphatase and E2, with Ca2+ acting as a bridging ligand for specific attachment of the phosphatase to E2.
丙酮酸脱氢酶磷酸酶从牛心脏和肾脏线粒体中纯化至表观均一。通过沉降平衡和凝胶渗透色谱法测定,该磷酸酶的沉降系数(S20,w)约为7.4 S,分子量(Mr)约为150000。通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳估计,该磷酸酶由两个分子量分别约为97000和50000的亚基组成。磷酸酶活性存在于分子量为50000的亚基中,该亚基对蛋白水解敏感。每摩尔分子量为150000的蛋白质,该磷酸酶含有约1摩尔的黄素腺嘌呤二核苷酸(FAD)。FAD显然与分子量为97000的亚基相关。该亚基的功能尚待确定。在pH 7.0时,该磷酸酶每摩尔分子量为150000的酶结合1摩尔Ca2+,通过流动透析测定其解离常数(Kd)约为35μM。在pH 7.6时使用乙二醇双(β-氨基乙基醚)-N,N,N',N'-四乙酸(EGTA)结合流动透析,得到Ca2+的Kd值约为8μM。在丙酮酸脱氢酶复合物的磷酸酶和二氢硫辛酰胺转乙酰基酶(E2)核心均存在的情况下,每单位分子量为150000检测到两个等效且明显不相互作用的Ca2+结合位点,在不存在EGTA时Kd值约为24μM,在存在EGTA时约为5μM。在存在0.2 M KCl(其抑制磷酸酶活性约95%)的情况下,即使存在E2,该磷酸酶也仅表现出一个Ca2+结合位点。该磷酸酶显然具有一个“内在”的Ca2+结合位点,并且在存在E2时会产生第二个Ca2+结合位点。第二个位点显然会因离子强度增加而改变。有人提出,第二个位点可能位于磷酸酶和E2之间的界面处,Ca2+作为桥连配体用于磷酸酶与E2的特异性结合。