Ehsan Hashimul, Reichheld Jean-Philippe, Durfee Tim, Roe Judith L
Program in Molecular, Cellular, and Developmental Biology, Division of Biology, Kansas State University, Manhattan, Kansas 66506-4901, USA.
Plant Physiol. 2004 Apr;134(4):1488-99. doi: 10.1104/pp.103.038117. Epub 2004 Mar 26.
The TOUSLED (TSL)-like nuclear protein kinase family is highly conserved in plants and animals. tsl loss of function mutations cause pleiotropic defects in both leaf and flower development, and growth and initiation of floral organ primordia is abnormal, suggesting that basic cellular processes are affected. TSL is more highly expressed in exponentially growing Arabidopsis culture cells than in stationary, nondividing cells. While its expression remains constant throughout the cell cycle in dividing cells, TSL kinase activity is higher in enriched late G2/M-phase and G1-phase populations of Arabidopsis suspension culture cells compared to those in S-phase. tsl mutants also display an aberrant pattern and increased expression levels of the mitotic cyclin gene CycB1;1, suggesting that TSL represses CycB1;1 expression at certain times during development or that cells are delayed in mitosis. TSL interacts with and phosphorylates one of two Arabidopsis homologs of the nucleosome assembly/silencing protein Asf1 and histone H3, as in humans, and a novel plant SANT/myb-domain protein, TKI1, suggesting that TSL plays a role in chromatin metabolism.
类TOUSLED(TSL)核蛋白激酶家族在植物和动物中高度保守。tsl功能缺失突变在叶片和花发育中导致多效性缺陷,花器官原基的生长和起始异常,这表明基本细胞过程受到影响。TSL在指数生长的拟南芥培养细胞中比在静止、不分裂的细胞中表达更高。虽然其在分裂细胞的整个细胞周期中表达保持恒定,但与S期相比,TSL激酶活性在拟南芥悬浮培养细胞富集的晚G2/M期和G1期群体中更高。tsl突变体还表现出有丝分裂周期蛋白基因CycB1;1的异常模式和表达水平增加,这表明TSL在发育过程中的某些时候抑制CycB1;1表达,或者细胞在有丝分裂中延迟。TSL与核小体组装/沉默蛋白Asf1和组蛋白H3的两个拟南芥同源物之一相互作用并使其磷酸化,就像在人类中一样,以及一种新型植物SANT/Myb结构域蛋白TKI1,这表明TSL在染色质代谢中起作用。