用发光共振能量转移分析ABC转运体的构象平衡。

IF 3.2 3区 生物学 Q2 BIOPHYSICS
Biophysical journal Pub Date : 2025-04-01 Epub Date: 2025-02-18 DOI:10.1016/j.bpj.2025.02.016
Maria E Zoghbi, Annabella Nouel Barreto, Alex L Hernandez
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引用次数: 0

摘要

人类线粒体内膜有三种已知的atp结合盒(ABC)转运蛋白(ABCB7、ABCB8和ABCB10)。ABCB10是迄今为止研究最多的一种,对正常红细胞的发育和防止氧化应激至关重要,最近发现它可以输出胆绿素,一种具有抗氧化特性的血红素降解产物。abc转运蛋白功能的分子机制仍有争议。它们的核苷酸结合域(nbd)必须二聚化才能水解ATP,但在实验上很难捕获这种构象的转运蛋白进行结构研究,特别是对于ABCB10和相关的真核转运蛋白。纯化的转运体通常在洗涤剂胶束中进行研究,或者在纳米圆盘中重组后进行研究,通常在非生理温度下,使用不可水解的ATP类似物或阻止ATP水解的突变。本研究利用发光共振能量转移(LRET)技术评价了实验条件对ABCB10 NBDs二聚化反应的影响。我们的结果表明,所有用于确定目前可用的ABCB10结构的条件都未能诱导nbd二聚化。洗涤剂中的ABCB10仅在37℃时对MgATP有反应,而重组蛋白更容易向二聚体nbd转变,包括对MgAMP-PNP的反应,甚至在室温下与MgATP出现nbd二聚化。纳米盘的大小会影响ABCB10的无核苷酸构象平衡以及在缺乏镁的情况下对ATP的响应,但对于所有分析的大小(支架蛋白MSP1D1、MSP1E3D1和MSP2N2),在活性ATP水解过程中,二聚体nbd的构象显然是首选的(MgATP, 37℃)。这些结果强调了这种人类ABC转运蛋白对实验条件的敏感性,以及对在远离生理条件下获得的结构模型进行更谨慎解释的必要性。二聚体nbd构象在先前的研究中一直难以捉摸,似乎在生理温度下MgATP水解过程中占主导地位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Conformational equilibrium of an ABC transporter analyzed by luminescence resonance energy transfer.

Humans have three known ATP-binding cassette (ABC) transporters in the inner mitochondrial membrane (ABCB7, ABCB8, and ABCB10). ABCB10, the most studied of them thus far, is essential for normal red blood cell development and protection against oxidative stress, and it was recently found to export biliverdin, a heme degradation product with antioxidant properties. The molecular mechanism underlying the function of ABC transporters remains controversial. Their nucleotide binding domains (NBDs) must dimerize to hydrolyze ATP, but capturing the transporters in such conformation for structural studies has been experimentally difficult, especially for ABCB10 and related eukaryotic transporters. Purified transporters are commonly studied in detergent micelles, or after their reconstitution in nanodiscs, usually at nonphysiological temperature and using nonhydrolyzable ATP analogs or mutations that prevent ATP hydrolysis. Here, we have used luminescence resonance energy transfer to evaluate the effect of experimental conditions on the NBD dimerization of ABCB10. Our results indicate that all conditions used for determination of currently available ABCB10 structures have failed to induce NBD dimerization. ABCB10 in detergent responded only to MgATP at 37°C, whereas reconstituted protein shifted toward dimeric NBDs more easily, including in response to MgAMP-PNP and even present NBD dimerization with MgATP at room temperature. The nanodisc's size affects the nucleotide-free conformational equilibrium of ABCB10 and the response to ATP in the absence of magnesium, but for all analyzed sizes (scaffold proteins MSP1D1, MSP1E3D1, and MSP2N2), a conformation with dimeric NBDs is clearly preferred during active ATP hydrolysis (MgATP, 37°C). These results highlight the sensitivity of this human ABC transporter to experimental conditions and the need for a more cautious interpretation of structural models obtained under far from physiological conditions. A dimeric NBD conformation that has been elusive in previous studies seems to be dominant during MgATP hydrolysis at physiological temperature.

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来源期刊
Biophysical journal
Biophysical journal 生物-生物物理
CiteScore
6.10
自引率
5.90%
发文量
3090
审稿时长
2 months
期刊介绍: BJ publishes original articles, letters, and perspectives on important problems in modern biophysics. The papers should be written so as to be of interest to a broad community of biophysicists. BJ welcomes experimental studies that employ quantitative physical approaches for the study of biological systems, including or spanning scales from molecule to whole organism. Experimental studies of a purely descriptive or phenomenological nature, with no theoretical or mechanistic underpinning, are not appropriate for publication in BJ. Theoretical studies should offer new insights into the understanding ofexperimental results or suggest new experimentally testable hypotheses. Articles reporting significant methodological or technological advances, which have potential to open new areas of biophysical investigation, are also suitable for publication in BJ. Papers describing improvements in accuracy or speed of existing methods or extra detail within methods described previously are not suitable for BJ.
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