Bali P K, Aisen P
Department of Physiology and Biophysics, Albert Einstein College of Medicine, Bronx, New York 10461.
Biochemistry. 1991 Oct 15;30(41):9947-52. doi: 10.1021/bi00105a019.
Iron release to PPi from N- and C-terminal monoferric transferrins and their complexes with transferrin receptor has been studied at pH 7.4 and 5.6 in 0.05 M HEPES or MES/0.1 M NaCl/0.01 M CHAPS at 25 degrees C. The two sites exhibit kinetic heterogeneity in releasing iron. The N-terminal form is slightly less labile than its C-terminal counterpart at pH 7.4, but much more facile in releasing iron at pH 5.6. At pH 7.4, iron removal by 0.05 M pyrophosphate from each form of monoferric transferrin complexed to the receptor is considerably slower than from the corresponding free monoferric transferrin. However, at pH 5.6, complexation of transferrin to its receptor affects the two forms differently. The rate of iron release to 0.005 M pyrophosphate by the N-terminal species is substantially the same whether transferrin is free or bound to the receptor. In contrast, the C-terminal form releases iron much faster when complexed to the receptor than when free. Urea/PAGE analysis of iron removal from free and receptor-complexed diferric transferrin at pH 5.6 reveals that its C-terminal site is also more labile in the complex, but its N-terminal site is more labile in free diferric transferrin. Thus, the newly discovered role of transferrin receptor in modulating iron release from transferrin predominantly involves the C-terminal site. This observation helps explain the prevalence of circulating N-terminal monoferric transferrin in the human circulation.
在25摄氏度下,于0.05 M HEPES或MES/0.1 M NaCl/0.01 M CHAPS中,在pH 7.4和5.6条件下研究了N端和C端单铁转铁蛋白及其与转铁蛋白受体复合物中铁向焦磷酸(PPi)的释放情况。两个位点在释放铁时表现出动力学异质性。在pH 7.4时,N端形式的稳定性略低于其C端对应物,但在pH 5.6时释放铁更为容易。在pH 7.4时,0.05 M焦磷酸从与受体结合的每种形式的单铁转铁蛋白中去除铁的速度明显慢于从相应的游离单铁转铁蛋白中去除铁的速度。然而,在pH 5.6时,转铁蛋白与受体的结合对两种形式的影响不同。无论转铁蛋白是游离的还是与受体结合的,N端物种向0.005 M焦磷酸释放铁的速率基本相同。相比之下,C端形式与受体结合时比游离时释放铁的速度要快得多。对pH 5.6时游离和与受体结合的双铁转铁蛋白中铁去除情况的尿素/聚丙烯酰胺凝胶电泳分析表明,其C端位点在复合物中也更不稳定,但其N端位点在游离双铁转铁蛋白中更不稳定。因此转铁蛋白受体在调节转铁蛋白释放铁方面新发现的作用主要涉及C端位点。这一观察结果有助于解释人循环中N端单铁转铁蛋白普遍存在的现象。