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大鼠肝脏和肾脏I型5'-脱碘酶的亲和标记。27-kDa底物结合亚基的鉴定。

Affinity labeling of rat liver and kidney type I 5'-deiodinase. Identification of the 27-kDa substrate binding subunit.

作者信息

Köhrle J, Rasmussen U B, Ekenbarger D M, Alex S, Rokos H, Hesch R D, Leonard J L

机构信息

Department of Physiology, University of Massachusetts Medical School, Worcester 01655.

出版信息

J Biol Chem. 1990 Apr 15;265(11):6155-63.

PMID:2318852
Abstract

Extrathyroidal production of 3,3',5-triiodothyronine from the thyroid secretory product, thyroxine, is catalyzed by tissue-specific iodothyronine 5'-deiodinases. Type I 5'-deiodinase (5'D-I) produces greater than 75% of the T3 found in the circulation and in thyroid hormone-responsive tissues and is most abundant in rat liver and kidney. In this study, we used the bromoacetyl derivatives of T4 (N-bromoacetyl-[125I]L-thyroxine, BrAcT4) and T3 (N-bromoacetyl-[125I]3,3',5-triiodothyronine, BrAcT3) as alkylating affinity labels to identify 5'D-I-related protein(s). BrAcT4 and BrAcT3 rapidly and irreversibly inactivated 5'D-I activity in liver and kidney microsomes. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis of affinity labeled 5'D-I preparations showed that approximately 80% of the affinity label was incorporated into a protein with a Mr of 27,000 (p27). 5'D-I substrates and inhibitors specifically blocked affinity labeling of p27 with a rank order of potency (BrAcT4 greater than BrAcT3 greater than 3,5,3'-triiodothyronine (rT3) approximately flavone EMD 21388 greater than iodoacetate greater than N-acetyl-T4 (NAcT4) greater than N-acetyl-T3 (NAcT3] identical to that determined for inhibition of 5'-deiodination. Hyper- and hypothyroidism-induced increases and decreases in 5'D-I activity, respectively, were matched by comparable changes in the quantity of affinity labeled p27. BrAcT3 was a less effective affinity label for p27 and minor labeling of a new band with 53 kDa was observed. Molecular sieve chromatography of detergent-solubilized 5'D-I showed coincident peaks of p27 and 5'-deiodinating activity with an apparent Mr approximately 51,000. Two-dimensional gel electrophoresis showed that p27 was a single polypeptide with a pI of 6.1. Approximately 2-5 pmol of p27 were present per mg of liver microsomal protein, equal to previous estimates for 5'D-I content. Our results suggest that p27 represents the substrate binding subunit of type I 5'-deiodinase, the enzyme catalyzing the key reaction in the activation of T4 to the thyromimetically active T3.

摘要

甲状腺分泌产物甲状腺素在甲状腺外生成3,3',5-三碘甲状腺原氨酸是由组织特异性的碘甲状腺原氨酸5'-脱碘酶催化的。I型5'-脱碘酶(5'D-I)产生循环系统和甲状腺激素反应性组织中超过75%的T3,在大鼠肝脏和肾脏中含量最为丰富。在本研究中,我们使用T4(N-溴乙酰基-[125I]L-甲状腺素,BrAcT4)和T3(N-溴乙酰基-[125I]3,3',5-三碘甲状腺原氨酸,BrAcT3)的溴乙酰衍生物作为烷基化亲和标记物来鉴定与5'D-I相关的蛋白质。BrAcT4和BrAcT3能快速且不可逆地使肝脏和肾脏微粒体中的5'D-I活性失活。对经亲和标记的5'D-I制剂进行十二烷基硫酸钠-聚丙烯酰胺凝胶电泳显示,约80%的亲和标记物掺入了一种分子量为27,000(p27)的蛋白质中。5'D-I底物和抑制剂能特异性阻断p27的亲和标记,其效力顺序为(BrAcT4>BrAcT3>3,5,3'-三碘甲状腺原氨酸(rT3)≈黄酮EMD 21388>碘乙酸>N-乙酰基-T4(NAcT4)>N-乙酰基-T3(NAcT3)),与抑制5'-脱碘反应所确定的顺序相同。甲状腺功能亢进和减退分别导致5'D-I活性增加和降低,与之相应的是经亲和标记的p27量也有类似变化。BrAcT3对p27来说是一种效果较差的亲和标记物,并且观察到一条53 kDa新带的少量标记。对用去污剂溶解的5'D-I进行分子筛层析显示,p27和5'-脱碘活性的峰重合,表观分子量约为五万一千。二维凝胶电泳显示p27是一种单一多肽,其等电点为6.1。每毫克肝脏微粒体蛋白中约存在2 - 5 pmol的p27,与先前对5'D-I含量的估计值相当。我们的结果表明,p27代表I型5'-脱碘酶的底物结合亚基,该酶催化T4活化为具有甲状腺激素活性的T3的关键反应。

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