University of Fribourg, Department of Biology, CH-1700 Fribourg, Switzerland.
Plant Cell Physiol. 2017 Oct 1;58(10):1601-1614. doi: 10.1093/pcp/pcx104.
Different subclasses of ATP-binding cassette (ABC) transporters have been implicated in the transport of native variants of the phytohormone auxin. Here, the putative, individual roles of key members belonging to the ABCB, ABCD and ABCG families, respectively, are highlighted and the knowledge of their assumed expression and transport routes is reviewed and compared with their mutant phenotypes. Protein-protein interactions between ABC transporters and regulatory components during auxin transport are summarized and their importance is critically discussed. There is a focus on the functional interaction between members of the ABCB family and the FKBP42, TWISTED DWARF1, acting as a chaperone during plasma membrane trafficking of ABCBs. Further, the mode and relevance of functional ABCB-PIN interactions is diagnostically re-evaluated. A new nomenclature describing precisely the most likely ABCB-PIN interaction scenarios is suggested. Finally, available tools for the detection and prediction of ABC transporter interactomes are summarized and the potential of future ABC transporter interactome maps is highlighted.
不同亚类的 ATP 结合盒(ABC)转运蛋白被认为参与了植物激素生长素天然变异体的转运。在这里,分别强调了分别属于 ABCB、ABCD 和 ABCG 家族的关键成员的假定个体作用,并回顾了它们假定的表达和运输途径的知识,并将其与突变体表型进行了比较。总结了生长素运输过程中 ABC 转运蛋白与调节成分之间的蛋白-蛋白相互作用,并对其重要性进行了批判性讨论。重点关注 ABCB 家族成员与 FKBP42、TWISTED DWARF1 之间的功能相互作用,它们在 ABCB 的质膜运输过程中充当伴侣。此外,还重新评估了 ABCB-PIN 相互作用的模式和相关性。建议了一种新的命名法,用于准确描述最可能的 ABCB-PIN 相互作用场景。最后,总结了用于检测和预测 ABC 转运蛋白互作组的现有工具,并强调了未来 ABC 转运蛋白互作组图谱的潜力。