Terasaka Kazuyoshi, Blakeslee Joshua J, Titapiwatanakun Boosaree, Peer Wendy A, Bandyopadhyay Anindita, Makam Srinivas N, Lee Ok Ran, Richards Elizabeth L, Murphy Angus S, Sato Fumihiko, Yazaki Kazufumi
Laboratory of Molecular and Cellular Biology of Totipotency, Division of Integrated Life Science, Graduate School of Biostudies, Kyoto University, Kitashirakawa, Kyoto 606-8502, Japan.
Plant Cell. 2005 Nov;17(11):2922-39. doi: 10.1105/tpc.105.035816. Epub 2005 Oct 21.
Members of the ABC (for ATP binding cassette) superfamily of integral membrane transporters function in cellular detoxification, cell-to-cell signaling, and channel regulation. More recently, members of the multidrug resistance P-glycoprotein (MDR/PGP) subfamily of ABC transporters have been shown to function in the transport of the phytohormone auxin in both monocots and dicots. Here, we report that the Arabidopsis thaliana MDR/PGP PGP4 functions in the basipetal redirection of auxin from the root tip. Reporter gene studies showed that PGP4 was strongly expressed in root cap and epidermal cells. PGP4 exhibits apolar plasma membrane localization in the root cap and polar localization in tissues above. Root gravitropic bending and elongation as well as lateral root formation were reduced in pgp4 mutants compared with the wild type. pgp4 exhibited reduced basipetal auxin transport in roots and a small decrease in shoot-to-root transport consistent with a partial loss of the redirective auxin sink in the root. Seedlings overexpressing PGP4 exhibited increased shoot-to-root auxin transport. Heterologous expression of PGP4 in mammalian cells resulted in 1-N-naphthylthalamic acid-reversible net uptake of [3H]indole-3-acetic acid. These results indicate that PGP4 functions primarily in the uptake of redirected or newly synthesized auxin in epidermal root cells.
整合膜转运蛋白ABC(ATP结合盒)超家族的成员在细胞解毒、细胞间信号传导和通道调节中发挥作用。最近,ABC转运蛋白的多药耐药P-糖蛋白(MDR/PGP)亚家族的成员已被证明在单子叶植物和双子叶植物中参与植物激素生长素的运输。在此,我们报道拟南芥MDR/PGP PGP4在生长素从根尖的向基重定向中发挥作用。报告基因研究表明,PGP4在根冠和表皮细胞中强烈表达。PGP4在根冠中表现出非极性质膜定位,在上方组织中表现出极性定位。与野生型相比,pgp4突变体的根向重力性弯曲和伸长以及侧根形成减少。pgp4在根中向基生长素运输减少,在茎到根的运输中略有下降,这与根中生长素重定向库的部分丧失一致。过表达PGP4的幼苗表现出茎到根的生长素运输增加。PGP4在哺乳动物细胞中的异源表达导致[3H]吲哚-3-乙酸的1-N-萘基邻氨基苯甲酸可逆净摄取。这些结果表明,PGP4主要在表皮根细胞中摄取重定向或新合成的生长素中发挥作用。