Smith L G, Gerttula S M, Han S, Levy J
Section of Cell and Developmental Biology, University of California at San Diego, La Jolla, California 92093, USA.
J Cell Biol. 2001 Jan 8;152(1):231-6. doi: 10.1083/jcb.152.1.231.
Spatial control of cytokinesis in plant cells depends on guidance of the cytokinetic apparatus, the phragmoplast, to a cortical "division site" established before mitosis. Previously, we showed that the Tangled1 (Tan1) gene of maize is required for this process during maize leaf development (Cleary, A.L., and L.G. Smith. 1998. Plant Cell. 10:1875-1888.). Here, we show that the Tan1 gene is expressed in dividing cells and encodes a highly basic protein that can directly bind to microtubules (MTs). Moreover, proteins recognized by anti-TAN1 antibodies are preferentially associated with the MT-containing cytoskeletal structures that are misoriented in dividing cells of tan1 mutants. These results suggest that TAN1 protein participates in the orientation of cytoskeletal structures in dividing cells through an association with MTs.
植物细胞中胞质分裂的空间控制取决于细胞分裂装置(成膜体)向有丝分裂前建立的皮质“分裂位点”的引导。此前,我们发现玉米的Tangled1(Tan1)基因在玉米叶片发育过程中对这一过程是必需的(Cleary,A.L.,和L.G. Smith. 1998. Plant Cell. 10:1875 - 1888.)。在这里,我们表明Tan1基因在分裂细胞中表达,并编码一种高度碱性的蛋白质,该蛋白质可以直接结合微管(MTs)。此外,抗TAN1抗体识别的蛋白质优先与tan1突变体分裂细胞中方向错误的含MT的细胞骨架结构相关。这些结果表明,TAN1蛋白通过与MTs结合参与分裂细胞中细胞骨架结构的定向。