Berghout A, Raida M, Romano L, Passow H
Biochim Biophys Acta. 1985 May 14;815(2):281-6. doi: 10.1016/0005-2736(85)90298-6.
Dansylation of the red blood cell membrane inhibits monovalent anion transport as measured by means of 36C1 and enhances divalent anion transport as measured by means of 35SO4 (Legrum, Fasold and Passow (1980) Hoppe-Seyler's Z. Physiol. Chem. 361, 1573-1590 and Lepke and Passow (1982) J. Physiol. (London) 328, 27-48). In the present work the effect of dansylation on phosphate equilibrium exchange was studied over the pH range where the ratio between monovalent and divalent phosphate anions varies. At high pH, phosphate equilibrium exchange was enhanced; at low pH, exchange was inhibited. The pH maximum of phosphate equilibrium exchange, seen at pH 6.3 in untreated ghosts is now replaced by a plateau. The inverse effects of dansylation on the rates of exchange at high and low pH suggest that both monovalent and divalent phosphate anions are accepted as substrates by the anion transport protein. A tentative attempt to obtain a quantitative estimate of the ratio of monovalent and divalent phosphate transport indicates that in the untreated red cell membrane over the pH range 7.2-8.5 the transport of HPO42- is negligible compared to the transport of H2PO4-.
用丹磺酰化处理红细胞膜后,通过³⁶Cl测量,单价阴离子转运受到抑制;通过³⁵SO₄测量,二价阴离子转运得到增强(莱格鲁姆、法索尔德和帕索(1980年),《霍佩 - 赛勒生理化学杂志》361卷,第1573 - 1590页;莱普克和帕索(1982年),《生理学杂志》(伦敦)328卷,第27 - 48页)。在本研究中,我们研究了丹磺酰化对磷酸根平衡交换的影响,研究范围为单价和二价磷酸根阴离子比例发生变化的pH值范围。在高pH值时,磷酸根平衡交换增强;在低pH值时,交换受到抑制。在未处理的血影中于pH 6.3时出现的磷酸根平衡交换的pH最大值,现在被一个平台所取代。丹磺酰化在高pH值和低pH值下对交换速率的相反影响表明,单价和二价磷酸根阴离子均被阴离子转运蛋白作为底物接受。对单价和二价磷酸根转运比例进行定量估计的初步尝试表明,在未处理的红细胞膜中,在pH值7.2 - 8.5范围内,与H₂PO₄⁻的转运相比,HPO₄²⁻的转运可忽略不计。