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2
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Functional roles of the A335 and G338 residues of the proton-coupled folate transporter (PCFT-SLC46A1) mutated in hereditary folate malabsorption.质子偶联叶酸转运体(PCFT-SLC46A1)中 A335 和 G338 残基的功能作用,这两个残基在遗传性叶酸吸收不良中发生突变。
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Substituted-cysteine accessibility and cross-linking identify an exofacial cleft in the 7th and 8th helices of the proton-coupled folate transporter (SLC46A1).取代半胱氨酸的可及性和交联鉴定了质子偶联叶酸转运蛋白(SLC46A1)的第 7 和第 8 个螺旋的胞外裂隙。
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2
The evolving biology of the proton-coupled folate transporter: New insights into regulation, structure, and mechanism.质子偶联叶酸转运体的不断发展的生物学:对其调控、结构和机制的新认识。
FASEB J. 2022 Feb;36(2):e22164. doi: 10.1096/fj.202101704R.
3
Impact of nanodisc lipid composition on cell-free expression of proton-coupled folate transporter.纳米盘脂质组成对质子偶联叶酸转运蛋白无细胞表达的影响。
PLoS One. 2021 Nov 18;16(11):e0253184. doi: 10.1371/journal.pone.0253184. eCollection 2021.
4
Structural basis of antifolate recognition and transport by PCFT.PCFT 识别和转运叶酸类似物的结构基础。
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5
A proton-coupled folate transporter mutation causing hereditary folate malabsorption locks the protein in an inward-open conformation.一种导致遗传性叶酸吸收不良的质子偶联叶酸转运蛋白突变将该蛋白锁定在向内开放的构象中。
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Identification of the amino acid residue responsible for the myricetin sensitivity of human proton-coupled folate transporter.鉴定导致人质子偶联叶酸转运蛋白对杨梅素敏感性的氨基酸残基。
Sci Rep. 2019 Dec 2;9(1):18105. doi: 10.1038/s41598-019-54367-9.
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Substitutions that lock and unlock the proton-coupled folate transporter (PCFT-SLC46A1) in an inward-open conformation.使质子偶联叶酸转运蛋白(PCFT-SLC46A1)在内向开放构象中锁定和解锁的取代。
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Residues in the eighth transmembrane domain of the proton-coupled folate transporter (SLC46A1) play an important role in defining the aqueous translocation pathway and in folate substrate binding.质子偶联叶酸转运体(SLC46A1)第八跨膜域的残基在确定水相转运途径和叶酸底物结合方面发挥着重要作用。
Biochim Biophys Acta Biomembr. 2017 Nov;1859(11):2193-2202. doi: 10.1016/j.bbamem.2017.08.006. Epub 2017 Aug 9.
10
Impact of posttranslational modifications of engineered cysteines on the substituted cysteine accessibility method: evidence for glutathionylation.工程化半胱氨酸的翻译后修饰对取代半胱氨酸可及性方法的影响:谷胱甘肽化的证据。
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本文引用的文献

1
Functional roles of the A335 and G338 residues of the proton-coupled folate transporter (PCFT-SLC46A1) mutated in hereditary folate malabsorption.质子偶联叶酸转运体(PCFT-SLC46A1)中 A335 和 G338 残基的功能作用,这两个残基在遗传性叶酸吸收不良中发生突变。
Am J Physiol Cell Physiol. 2012 Oct 15;303(8):C834-42. doi: 10.1152/ajpcell.00171.2012. Epub 2012 Jul 25.
2
Identification of a functionally critical GXXG motif and its relationship to the folate binding site of the proton-coupled folate transporter (PCFT-SLC46A1).鉴定质子偶联叶酸转运蛋白(PCFT-SLC46A1)的功能关键 GXXG 基序及其与叶酸结合位点的关系。
Am J Physiol Cell Physiol. 2012 Sep 15;303(6):C673-81. doi: 10.1152/ajpcell.00123.2012. Epub 2012 Jul 11.
3
A P425R mutation of the proton-coupled folate transporter causing hereditary folate malabsorption produces a highly selective alteration in folate binding.质子偶联叶酸转运蛋白 P425R 突变导致遗传性叶酸吸收不良,导致叶酸结合的高度选择性改变。
Am J Physiol Cell Physiol. 2012 May 1;302(9):C1405-12. doi: 10.1152/ajpcell.00435.2011. Epub 2012 Feb 15.
4
Identification and functional impact of homo-oligomers of the human proton-coupled folate transporter.鉴定和功能影响的同型寡聚体的人质子偶联叶酸转运体。
J Biol Chem. 2012 Feb 10;287(7):4982-95. doi: 10.1074/jbc.M111.306860. Epub 2011 Dec 16.
5
Therapeutic targeting of a novel 6-substituted pyrrolo [2,3-d]pyrimidine thienoyl antifolate to human solid tumors based on selective uptake by the proton-coupled folate transporter.基于质子偶联叶酸转运体的选择性摄取,新型 6-取代吡咯并[2,3-d]嘧啶噻吩酰类抗叶酸药物对人实体瘤的治疗靶向作用。
Mol Pharmacol. 2011 Dec;80(6):1096-107. doi: 10.1124/mol.111.073833. Epub 2011 Sep 22.
6
Random mutagenesis of the proton-coupled folate transporter (SLC46A1), clustering of mutations, and the bases for associated losses of function.质子偶联叶酸转运体(SLC46A1)的随机诱变、突变簇集以及与功能丧失相关的基础。
J Biol Chem. 2011 Jul 8;286(27):24150-8. doi: 10.1074/jbc.M111.236539. Epub 2011 May 20.
7
Mechanisms of membrane transport of folates into cells and across epithelia.叶酸进入细胞和穿过上皮的膜转运机制。
Annu Rev Nutr. 2011 Aug 21;31:177-201. doi: 10.1146/annurev-nutr-072610-145133.
8
Vulnerability of the cysteine-less proton-coupled folate transporter (PCFT-SLC46A1) to mutational stress associated with the substituted cysteine accessibility method.无半胱氨酸质子偶联叶酸转运体(PCFT-SLC46A1)对与取代半胱氨酸可及性方法相关的突变应激的易感性。
Biochim Biophys Acta. 2011 Apr;1808(4):1140-5. doi: 10.1016/j.bbamem.2011.01.008. Epub 2011 Jan 20.
9
Functional roles of aspartate residues of the proton-coupled folate transporter (PCFT-SLC46A1); a D156Y mutation causing hereditary folate malabsorption.天冬氨酸残基在质子偶联叶酸转运体(PCFT-SLC46A1)中的功能作用;导致遗传性叶酸吸收不良的 D156Y 突变。
Blood. 2010 Dec 9;116(24):5162-9. doi: 10.1182/blood-2010-06-291237. Epub 2010 Aug 30.
10
Properties of the Arg376 residue of the proton-coupled folate transporter (PCFT-SLC46A1) and a glutamine mutant causing hereditary folate malabsorption.质子偶联叶酸转运蛋白(PCFT-SLC46A1)Arg376 残基的性质及导致遗传性叶酸吸收不良的谷氨酰胺突变体。
Am J Physiol Cell Physiol. 2010 Nov;299(5):C1153-61. doi: 10.1152/ajpcell.00113.2010. Epub 2010 Aug 4.

通过取代半胱氨酸可及性方法评估第四跨膜域在质子偶联叶酸转运蛋白功能中的作用。

Role of the fourth transmembrane domain in proton-coupled folate transporter function as assessed by the substituted cysteine accessibility method.

机构信息

Department of Molecular Pharmacology, Albert Einstein College of Medicine, Bronx, NY 10461, USA.

出版信息

Am J Physiol Cell Physiol. 2013 Jun 15;304(12):C1159-67. doi: 10.1152/ajpcell.00353.2012. Epub 2013 Apr 3.

DOI:10.1152/ajpcell.00353.2012
PMID:23552283
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3680650/
Abstract

The proton-coupled folate transporter (PCFT, SLC46A1) mediates folate transport across the apical brush-border membrane of the proximal small intestine and the basolateral membrane of choroid plexus ependymal cells. Two loss-of-function mutations in PCFT, which are the basis for hereditary folate malabsorption, have been identified within the fourth transmembrane domain (TMD4) in subjects with this disorder. We have employed the substituted Cys accessibility method (SCAM) to study the accessibilities of all residues in TMD4 and their roles in folate substrate binding to the carrier. When residues 146-167 were replaced by Cys, all except R148C were expressed at the cell surface. Modification of five of these substituted Cys residues (positions 147, 152, 157, 158, and 161) by methanethiosulfonate (MTS) reagents led to reduction of PCFT function. All five residues could be labeled with N-biotinylaminoethyl-MTS, and this could be blocked by the high-affinity PCFT substrate pemetrexed. Pemetrexed also protected PCFT mutant function from inhibitory modification of the substituted Cys at positions 157, 158, and 161 by a MTS. The findings indicate that these five residues in TMD4 are accessible to the aqueous translocation pathway, play a role in folate substrate binding, and are likely located within or near the folate binding pocket. A homology model of PCFT places three of these residues, Phe¹⁵⁷, Gly¹⁵⁸, and Leu¹⁶¹, within a breakpoint in the midportion of TMD4, a region that likely participates in alterations in the PCFT conformational state during carrier cycling.

摘要

质子偶联叶酸转运体(PCFT,SLC46A1)介导叶酸穿过近端小肠的顶膜刷状缘和脉络丛室管膜细胞的基底外侧膜的转运。在患有这种疾病的患者中,已经在第四跨膜域(TMD4)内发现了导致遗传性叶酸吸收不良的两个 PCFT 功能丧失突变。我们已经采用取代半胱氨酸可及性方法(SCAM)来研究 TMD4 中所有残基的可及性及其在叶酸底物与载体结合中的作用。当 146-167 位残基被半胱氨酸取代时,除了 R148C 之外,所有残基都表达在细胞表面。对其中五个取代半胱氨酸残基(位置 147、152、157、158 和 161)进行甲硫基乙磺酸(MTS)试剂修饰会导致 PCFT 功能降低。所有五个残基都可以用 N-生物素基乙胺-MTS 标记,并且这可以被高亲和力 PCFT 底物培美曲塞阻断。培美曲塞还可以保护 PCFT 突变体功能免受 MTS 对位置 157、158 和 161 的取代半胱氨酸的抑制性修饰。这些发现表明,TMD4 中的这五个残基可进入水通透途径,在叶酸底物结合中起作用,并且可能位于叶酸结合口袋内或附近。PCFT 的同源模型将这三个残基,即 Phe¹⁵⁷、Gly¹⁵⁸ 和 Leu¹⁶¹,置于 TMD4 中部的一个断点内,该区域可能参与了载体循环过程中 PCFT 构象状态的改变。