Mikogami T, Heyman M, Spik G, Desjeux J F
Laboratoire de Chimie Biologique, Université des Sciences et Technologies de Lille, France.
Am J Physiol. 1994 Aug;267(2 Pt 1):G308-15. doi: 10.1152/ajpgi.1994.267.2.G308.
The role of human lactoferrin (hLf) in alimentary iron absorption across intestinal cells was explored using a human differentiated colon carcinoma cell line, HT-29cl.19A. The apical surface of HT-29cl.19A cell monolayers exhibited 1.5 x 10(6) specific binding sites for hLf per cell, with a dissociation constant of 8.3 x 10(-7) M. The apical-to-basolateral transport of 125I-labeled hLf (125I-hLf) or 125I-59Fe-labeled hLf (125I-[59Fe]hLf) was investigated using filter-grown HT-29cl.19A cell monolayers mounted in Ussing chambers. Transport of total (intact plus degraded) hLf, measured by the 125I flux, was not saturable up to an apical hLf concentration of 12.5 microM, whereas immunoreactive hLf transport measured by enzyme-linked immunoabsorbent assay was saturable at 3.75 microM. Lowering the temperature to 4 degrees C reduced the total and immunoreactive hLf fluxes by 77% and 90%, and colchicine (500 microM) reduced these fluxes by 30% and > 97%, respectively. These results indicate that both types of transport are transcellular. Electrophoretic analysis revealed that 125I-hLf transported to the basal compartment consisted of largely degraded fragments (< 2 and 10-20 kDa) and a small portion of intact hLf. At an apical concentration of 3.75 microM diferric 125I-[59Fe]hLf, the immunoreactive hLf flux (64.6 +/- 14.3 ng.h-1.cm-2) constituted approximately 12% of the total hLf flux (552.0 +/- 61.6 ng.h-1.cm-2) and was similar to the [59Fe]hLf-equivalent flux (77.0 +/- 12.3 ng.h-1.cm-2).(ABSTRACT TRUNCATED AT 250 WORDS)
利用人分化结肠癌细胞系HT - 29cl.19A探究了人乳铁蛋白(hLf)在肠道细胞跨上皮铁吸收中的作用。HT - 29cl.19A细胞单层的顶端表面每个细胞有1.5×10⁶个hLf特异性结合位点,解离常数为8.3×10⁻⁷M。使用安装在尤斯灌流小室中的滤膜培养的HT - 29cl.19A细胞单层研究¹²⁵I标记的hLf(¹²⁵I - hLf)或¹²⁵I - ⁵⁹Fe标记的hLf(¹²⁵I - [⁵⁹Fe]hLf)从顶端到基底的转运。通过¹²⁵I通量测量的总(完整加降解)hLf转运在顶端hLf浓度达到12.5μM时不饱和,而通过酶联免疫吸附测定法测量的免疫反应性hLf转运在3.75μM时饱和。将温度降至4℃使总hLf通量和免疫反应性hLf通量分别降低77%和90%,秋水仙碱(500μM)分别使这些通量降低30%和>97%。这些结果表明两种转运类型均为跨细胞转运。电泳分析显示转运至基底室的¹²⁵I - hLf主要由降解片段(<2 kDa和10 - 20 kDa)和一小部分完整hLf组成。在顶端浓度为3.75μM的二价铁¹²⁵I - [⁵⁹Fe]hLf时,免疫反应性hLf通量(64.6±14.3 ng·h⁻¹·cm⁻²)约占总hLf通量(552.0±61.6 ng·h⁻¹·cm⁻²)的12%,且与[⁵⁹Fe]hLf等效通量(77.0±12.3 ng·h⁻¹·cm⁻²)相似。(摘要截短于250字)