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细胞分裂素通过刺激酪氨酸去磷酸化和激活p34cdc2样H1组蛋白激酶,在有丝分裂时控制细胞周期。

Cytokinin controls the cell cycle at mitosis by stimulating the tyrosine dephosphorylation and activation of p34cdc2-like H1 histone kinase.

作者信息

Zhang K, Letham D S, John P C

机构信息

Plant Cell Biology Group, Research School of Biological Sciences, Australian National University, Australia.

出版信息

Planta. 1996;200(1):2-12. doi: 10.1007/BF00196642.

Abstract

In excised pith parenchyma from Nicotiana tabacum L. cv. Wisconsin Havana 38, auxin (naphthalene-1-acetic acid) together with cytokinin (6-benzylaminopurine) induced a greater than 40-fold increase in a p34cdc2-like protein, recoverable in the p13suc1-binding fraction, that had high H1 histone kinase activity, but enzyme induced without cytokinin was inactive. In suspension-cultured N. plumbaginifolia Viv., cytokinin (kinetin) was stringently required only in late G2 phase of the cell division cycle (cdc) and cells lacking kinetin arrested in G2 phase with inactive p34cdc2-like H1 histone kinase. Control of the Cdc2 kinase by inhibitory tyrosine phosphorylation was indicated by high phosphotyrosine in the inactive enzyme of arrested pith and suspension cells. Yeast cdc25 phosphatase, which is specific for removal of phosphate from tyrosine at the active site of p34cdc2 enzyme, was expressed in bacteria and caused extensive in-vitro activation of p13suc1-purified enzyme from pith and suspension cells cultured without cytokinin. Cytokinin stimulated the removal of phosphate, activation of the enzyme and rapid synchronous entry into mitosis. Therefore, plants can control cell division by tyrosine phosphorylation of Cdc2 but differ from somatic animal cells in coupling this mitotic control to hormonal signals.

摘要

在烟草(Nicotiana tabacum L. cv. Wisconsin Havana 38)的离体髓薄壁组织中,生长素(萘-1-乙酸)与细胞分裂素(6-苄基氨基嘌呤)共同作用,可使一种p34cdc2样蛋白增加40倍以上,该蛋白可在与p13suc1结合的组分中回收,具有高H1组蛋白激酶活性,但在没有细胞分裂素诱导的情况下该酶无活性。在悬浮培养的垂花烟草(N. plumbaginifolia Viv.)中,细胞分裂素(激动素)仅在细胞分裂周期(cdc)的G2晚期是严格必需的,缺乏激动素的细胞在G2期停滞,其p34cdc2样H1组蛋白激酶无活性。停滞的髓细胞和悬浮细胞中的无活性酶中高磷酸酪氨酸表明,Cdc2激酶受抑制性酪氨酸磷酸化的调控。酵母cdc25磷酸酶特异性地从p34cdc2酶活性位点的酪氨酸上去除磷酸,在细菌中表达后可使来自未用细胞分裂素培养的髓细胞和悬浮细胞中经p13suc1纯化的酶发生广泛的体外激活。细胞分裂素刺激了磷酸的去除、酶的激活以及快速同步进入有丝分裂。因此,植物可通过Cdc2的酪氨酸磷酸化来控制细胞分裂,但在将这种有丝分裂控制与激素信号偶联方面与体细胞动物细胞不同。

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