Surpin Marci, Rojas-Pierce Marcela, Carter Clay, Hicks Glenn R, Vasquez Jacob, Raikhel Natasha V
Center for Plant Cell Biology and Department of Botany and Plant Sciences, University of California, Riverside, CA 92521,USA.
Proc Natl Acad Sci U S A. 2005 Mar 29;102(13):4902-7. doi: 10.1073/pnas.0500222102. Epub 2005 Mar 16.
Chemical genomics is a powerful approach to dissect processes that may be intractable using conventional genetics because of gene lethality or redundancy. Recently, a link has been established between endomembrane trafficking and gravitropism. To understand this link, we screened a library of 10,000 diverse chemicals for compounds that affected the gravitropism of Arabidopsis seedlings positively or negatively. Sixty-nine of 219 compounds from the primary screen were retested, and 34 of these were confirmed to inhibit or enhance gravitropism. Four of the 34 compounds were found to cause aberrant endomembrane morphologies. The chemicals affected gravitropism and vacuole morphology in concert in a tissue-specific manner, underscoring the link between endomembranes and gravitropism. One of the chemicals (5403629) was structurally similar to the synthetic auxin 2,4-dichlorophenoxy acetate, whereas the other three chemicals were unique in their structures. An in vivo functional assay using the reporter beta-glucuronidase under the auxin-inducible DR5 promoter confirmed that the unique compounds were not auxins. Interestingly, one of the unique chemicals (5850247) appeared to decrease the responsiveness to auxin in roots, whereas another (5271050) was similar to pyocyanin, a bacterial metabolite that has been suggested to target the endomembranes of yeast. These reagents will be valuable for dissecting endomembrane trafficking and gravitropism and for cognate target identification.
化学基因组学是一种强有力的方法,可用于剖析那些因基因致死性或冗余性而难以用传统遗传学方法研究的过程。最近,内膜运输与向重力性之间已建立起联系。为了解这种联系,我们在一个包含10000种不同化合物的文库中筛选对拟南芥幼苗向重力性有正向或负向影响的化合物。对初次筛选出的219种化合物中的69种进行了重新测试,其中34种被证实可抑制或增强向重力性。在这34种化合物中,有4种被发现会导致内膜形态异常。这些化合物以组织特异性的方式协同影响向重力性和液泡形态,突出了内膜与向重力性之间的联系。其中一种化合物(5403629)在结构上与合成生长素2,4 - 二氯苯氧乙酸相似,而其他三种化合物在结构上是独特的。使用生长素诱导型DR5启动子控制下的报告基因β - 葡萄糖醛酸酶进行的体内功能测定证实,这些独特的化合物不是生长素。有趣的是,其中一种独特的化合物(5850247)似乎会降低根对生长素的反应性,而另一种(5271050)与绿脓菌素相似,绿脓菌素是一种细菌代谢产物,有人认为它作用于酵母的内膜。这些试剂对于剖析内膜运输和向重力性以及识别相关靶点将具有重要价值。