Grieve A, Butcher S P, Griffiths R
Department of Biochemistry and Microbiology, University of St. Andrews, Fife, Scotland, United Kingdom.
J Neurosci Res. 1992 May;32(1):60-8. doi: 10.1002/jnr.490320108.
The transport kinetics of the excitatory sulphur-containing amino acid (SAA) transmitter candidates, L-cysteine sulphinate (L-CSA), L-cysteate (L-CA), L-homocysteine sulphinate (L-HCSA), and L-homocysteate (L-HCA), together with their plasma membrane carrier specificity, was studied in cerebrocortical synaptosome fractions by a sensitive high performance liquid chromatographic assay. A high affinity uptake system could be demonstrated for L-CSA (Km = 57 +/- 6 microM; Vmax = 1.2 +/- 0.1 nmol/min/mg protein) and L-CA (Km = 23 +/- 3 microM; Vmax = 3.6 +/- 0.1 nmol/min/mg protein), whereas L-HCSA (Km = 502 +/- 152 microM; Vmax = 6.1 +/- 1.3 nmol/min/mg protein) and L-HCA (Km = 1550 +/- 169 microM; Vmax = 10.3 +/- 1.1 nmol/min/mg protein) exhibited much lower affinity as transport substrates. In all cases, only a single, saturable Na(+)-dependent component of uptake could be identified, co-existing with a non-saturable, Na(+)-independent influx component. Plasma membrane carrier specificity of the SAAs was established following comparison with other high-affinity neurotransmitter systems. High-affinity L-CSA and L-CA transport and low-affinity L-HCSA and L-HCA transport demonstrate strong positive correlations in inhibition profiles when compared against each other or individually against the high-affinity transport of L-[3H]glutamate, L-[3H]aspartate, or D-[3H]aspartate. Moreover, the transport systems for the excitatory SAAs exhibited a negative correlation when compared in inhibition profiles with the high affinity transport of both [3H] gamma-aminobutyric acid (GABA) and [3H]taurine.(ABSTRACT TRUNCATED AT 250 WORDS)
采用灵敏的高效液相色谱分析法,在大脑皮质突触体组分中研究了兴奋性含硫氨基酸(SAA)递质候选物L-半胱亚磺酸(L-CSA)、L-半胱酸(L-CA)、L-高半胱亚磺酸(L-HCSA)和L-高半胱酸(L-HCA)的转运动力学及其质膜载体特异性。结果表明,L-CSA(Km = 57 +/- 6 microM;Vmax = 1.2 +/- 0.1 nmol/min/mg蛋白)和L-CA(Km = 23 +/- 3 microM;Vmax = 3.6 +/- 0.1 nmol/min/mg蛋白)存在高亲和力摄取系统,而L-HCSA(Km = 502 +/- 152 microM;Vmax = 6.1 +/- 1.3 nmol/min/mg蛋白)和L-HCA(Km = 1550 +/- 169 microM;Vmax = 10.3 +/- 1.1 nmol/min/mg蛋白)作为转运底物时亲和力低得多。在所有情况下,仅能识别出单一的、可饱和的Na(+)依赖性摄取成分,与非饱和的、Na(+)非依赖性流入成分共存。通过与其他高亲和力神经递质系统比较,确定了SAAs的质膜载体特异性。高亲和力的L-CSA和L-CA转运以及低亲和力的L-HCSA和L-HCA转运,在相互比较或分别与L-[3H]谷氨酸、L-[3H]天冬氨酸或D-[3H]天冬氨酸的高亲和力转运的抑制曲线中显示出强正相关。此外,兴奋性SAAs的转运系统在抑制曲线中与[3H]γ-氨基丁酸(GABA)和[3H]牛磺酸的高亲和力转运相比呈负相关。(摘要截短于250字)