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Folding and stability of membrane transport proteins in vitro

机译:膜转运蛋白的折叠和体外稳定性

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Transmembrane transporters are responsible for maintaining a correct internal cellular environment. The inherent flexibility of transporters together with their hydrophobic environment means that they are challenging to study in vitro, but recently significant progress been made. This review will focus on in vitro stability and folding studies of transmembrane alpha helical transporters, including reversible folding systems and thermal denaturation. The successful re-assembly of a small number of ATP binding cassette transporters is also described as this is a significant step forward in terms of understanding the folding and assembly of these more complex, multi-subunit proteins. The studies on transporters discussed here represent substantial advances for membrane protein studies as well as for research into protein folding. The work demonstrates that large flexible hydrophobic proteins are within reach of in vitro folding studies, thus holding promise for furthering knowledge on the structure, function and biogenesis of ubiquitous membrane transporter families.
机译:跨膜转运蛋白负责维持正确的内部细胞环境。转运蛋白的固有灵活性及其疏水性环境意味着它们在体外研究方面具有挑战性,但最近取得了重大进展。这项审查将侧重于跨膜α螺旋转运蛋白的体外稳定性和折叠研究,包括可逆折叠系统和热变性。还描述了少量ATP结合盒转运蛋白的成功重组,因为这在理解这些更复杂的多亚基蛋白的折叠和组装方面是向前迈出的重要一步。本文讨论的转运蛋白研究代表了膜蛋白研究以及蛋白折叠研究的重大进展。这项工作表明,大型柔性疏水蛋白在体外折叠研究的范围之内,因此有望为进一步了解遍在膜转运蛋白家族的结构,功能和生物发生提供希望。

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