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非洲爪蟾卵母细胞中表达的电生性钠/碳酸氢根共转运体(NBCe1)变体:功能比较及氨基和羧基末端的作用

Electrogenic Na/HCO3 cotransporter (NBCe1) variants expressed in Xenopus oocytes: functional comparison and roles of the amino and carboxy termini.

作者信息

McAlear Suzanne D, Liu Xiaofen, Williams Jennifer B, McNicholas-Bevensee Carmel M, Bevensee Mark O

机构信息

Department of Physiology and Biophysics, University of Alabama at Birmingham, 35294, USA.

出版信息

J Gen Physiol. 2006 Jun;127(6):639-58. doi: 10.1085/jgp.200609520.

Abstract

Using pH- and voltage-sensitive microelectrodes, as well as the two-electrode voltage-clamp and macropatch techniques, we compared the functional properties of the three NBCe1 variants (NBCe1-A, -B, and -C) with different amino and/or carboxy termini expressed in Xenopus laevis oocytes. Oocytes expressing rat brain NBCe1-B and exposed to a CO(2)/HCO(3)(-) solution displayed all the hallmarks of an electrogenic Na(+)/HCO(3)(-) cotransporter: (a) a DIDS-sensitive pH(i) recovery following the initial CO(2)-induced acidification, (b) an instantaneous hyperpolarization, and (c) an instantaneous Na(+)-dependent outward current under voltage-clamp conditions (-60 mV). All three variants had similar external HCO(3)(-) dependencies (apparent K(M) of 4-6 mM) and external Na(+) dependencies (apparent K(M) of 21-36 mM), as well as similar voltage dependencies. However, voltage-clamped oocytes (-60 mV) expressing NBCe1-A exhibited peak HCO(3)(-)-stimulated NBC currents that were 4.3-fold larger than the currents seen in oocytes expressing the most dissimilar C variant. Larger NBCe1-A currents were also observed in current-voltage relationships. Plasma membrane expression levels as assessed by single oocyte chemiluminescence with hemagglutinin-tagged NBCs were similar for the three variants. In whole-cell experiments (V(m) = -60 mV), removing the unique amino terminus of NBCe1-A reduced the mean HCO(3)(-)-induced NBC current 55%, whereas removing the different amino terminus of NBCe1-C increased the mean NBC current 2.7-fold. A similar pattern was observed in macropatch experiments. Thus, the unique amino terminus of NBCe1-A stimulates transporter activity, whereas the different amino terminus of the B and C variants inhibits activity. One or more cytosolic factors may also contribute to NBCe1 activity based on discrepancies between macropatch and whole-cell currents. While the amino termini influence transporter function, the carboxy termini influence plasma membrane expression. Removing the entire cytosolic carboxy terminus of NBCe1-C, or the different carboxy terminus of the A/B variants, causes a loss of NBC activity due to low expression at the plasma membrane.

摘要

我们使用对pH和电压敏感的微电极,以及双电极电压钳和巨膜片技术,比较了非洲爪蟾卵母细胞中表达的具有不同氨基和/或羧基末端的三种NBCe1变体(NBCe1-A、-B和-C)的功能特性。表达大鼠脑NBCe1-B并暴露于CO₂/HCO₃⁻溶液的卵母细胞表现出了电生性Na⁺/HCO₃⁻共转运体的所有特征:(a) 在最初由CO₂诱导的酸化后,DIDS敏感的细胞内pH恢复;(b) 瞬时超极化;(c) 在电压钳条件下(-60 mV)瞬时的Na⁺依赖性外向电流。所有三种变体都具有相似的细胞外HCO₃⁻依赖性(表观Kₘ为4 - 6 mM)和细胞外Na⁺依赖性(表观Kₘ为21 - 36 mM),以及相似的电压依赖性。然而,表达NBCe1-A的电压钳制卵母细胞(-60 mV)表现出的HCO₃⁻刺激的NBC电流峰值比表达最不相似的C变体的卵母细胞中的电流大4.3倍。在电流-电压关系中也观察到了更大的NBCe1-A电流。通过用血凝素标记的NBCs进行单卵母细胞化学发光评估的质膜表达水平在三种变体中相似。在全细胞实验(Vₘ = -60 mV)中,去除NBCe1-A独特的氨基末端使HCO₃⁻诱导的平均NBC电流降低了55%,而去除NBCe1-C不同的氨基末端使平均NBC电流增加了2.7倍。在巨膜片实验中观察到了类似的模式。因此,NBCe1-A独特的氨基末端刺激转运体活性,而B和C变体不同的氨基末端抑制活性。基于巨膜片电流和全细胞电流之间的差异,一种或多种胞质因子也可能对NBCe1活性有贡献。虽然氨基末端影响转运体功能,但羧基末端影响质膜表达。去除NBCe1-C的整个胞质羧基末端,或A/B变体不同的羧基末端,由于在质膜上的低表达会导致NBC活性丧失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33fc/2151535/5f0efe2f6ad0/jgp1270639f01.jpg

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