Hillenkamp Jost, Hussain Ali A, Jackson Timothy L, Cunningham Joanna R, Marshall John
Department of Ophthalmology, The Rayne Institute, St. Thomas' Hospital, Lambeth Palace Road, London SE1 7EH, UK.
Invest Ophthalmol Vis Sci. 2004 Dec;45(12):4529-34. doi: 10.1167/iovs.04-0919.
To characterize the Michaelis-Menten kinetics of the taurine transporter (TT) in retinal pigment epithelium (RPE) freshly isolated from human donor eyes. To identify the rate limiting compartment in the pathway of taurine delivery from the choroidal blood supply to the outer retina composed by Bruch's-choroid (BC) and the RPE in the human older age group.
In human donor samples (4 melanoma-affected eyes, and 14 control eyes; age range, 62-93 years), radiochemical techniques were used to determine the RPE taurine accumulation at various exogenous concentrations. The transport capability of human RPE was obtained from a kinetic analysis of the high-affinity carrier over a substrate concentration of 1 to 60 microM taurine.
Uptake of taurine into human RPE at a taurine concentration of 1 microM was independent of donor age (P > 0.05) and averaged at 2.83 +/- 0.27 (SEM) pmol/10 minutes per 6-mm trephine. Taurine transport by human RPE was mediated by a high-affinity carrier of K(m) 50 microM and V(max) of 267 pmol/10 minutes per 5-mm disc.
In human donor RPE, uptake of taurine remained viable in the age range 62 to 93 years. Taurine transport rates in the RPE were lower than across the isolated BC complex, and thus the data suggest that the former compartment houses the rate-limiting step in the delivery of taurine to the outer retina.
表征从人类供体眼中新鲜分离的视网膜色素上皮(RPE)中牛磺酸转运体(TT)的米氏动力学。确定在老年人群中,从脉络膜血液供应经布鲁赫膜 - 脉络膜(BC)和RPE到外视网膜的牛磺酸传递途径中的限速区室。
在人类供体样本(4只受黑色素瘤影响的眼睛和14只对照眼睛;年龄范围62 - 93岁)中,使用放射化学技术测定不同外源浓度下RPE中牛磺酸的积累。通过对1至60微摩尔/升牛磺酸底物浓度范围内高亲和力载体的动力学分析,获得人类RPE的转运能力。
在牛磺酸浓度为1微摩尔/升时,牛磺酸摄取到人类RPE中的情况与供体年龄无关(P>0.05),平均为2.83±0.27(SEM)皮摩尔/每6毫米环钻10分钟。人类RPE的牛磺酸转运由K(m)为50微摩尔/升、V(max)为267皮摩尔/每5毫米圆盘10分钟的高亲和力载体介导。
在人类供体RPE中,62至93岁年龄范围内牛磺酸摄取仍保持活性。RPE中的牛磺酸转运速率低于分离的BC复合体,因此数据表明前一个区室是牛磺酸向外视网膜传递的限速步骤所在。