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Distinct classes of mitotic cyclins are differentially expressed in the soybean shoot apex during the cell cycle.

机译:在细胞周期中不同种类的有丝分裂细胞周期蛋白在大豆芽的顶端差异表达。

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摘要

Protein phosphorylation by the complexes of cyclin and cyclin-dependent kinase plays a key role in cell cycle progression in all eukaryotes. The amplification by polymerase chain reaction of a cyclin box from developing root nodules and root apices of soybean showed the expression of a number of different molecular species of mitotic cyclins in plant meristems, and they were classified into five distinct groups based on their sequence similarities. The complete soybean cyclin cDNAs, cyc1Gm to cyc5Gm, corresponding to each group were isolated, and their predicted amino acid sequences showed clear similarities to mitotic cyclins identified from various organisms. These genes are expressed predominantly in such meristematic tissues as root and shoot apices and young developing nodules. Double-target in situ hybridization involving histone H4 as an S-phase marker allowed us to estimate the phases during which these cyclin genes are abundantly expressed. The results indicated that cyc5Gm is expressed in G2-to-M phases and cyc3Gm is expressed from late S-to-G2 phases. These expression patterns, together with the sequence criteria, strongly suggest that cyc3Gm and cyc5Gm encode the plant cognates for A- and B-type cyclins, respectively. In addition, the expression of cyc1Gm was restricted during a short period in S phase, suggesting that it belongs to a novel class of plant cyclins. Sequence comparison of 18 plant mitotic cyclins cloned thus far showed that they can be divided into four distinct structural groups with different functions in cell cycle progression.
机译:细胞周期蛋白和细胞周期蛋白依赖性激酶复合物的蛋白磷酸化在所有真核生物的细胞周期进程中都起着关键作用。通过聚合酶链反应从大豆根瘤和根尖发育的细胞周期蛋白盒中扩增,表明植物分生组织中表达了许多不同分子种类的有丝分裂细胞周期蛋白,根据其序列相似性将它们分为五个不同的组。分离出与每个组相对应的完整的大豆细胞周期蛋白cDNA,cyc1Gm至cyc5Gm,其预测的氨基酸序列与从各种生物体中鉴定的有丝分裂细胞周期蛋白具有明显的相似性。这些基因主要在分生组织如根和芽尖以及年轻的结节中表达。涉及组蛋白H4作为S期标记的双靶原位杂交使我们能够估计这些细胞周期蛋白基因大量表达的阶段。结果表明cyc5Gm在G2-to-M期表达,而cyc3Gm在S-G2后期表达。这些表达模式与序列标准一起强烈暗示cyc3Gm和cyc5Gm分别编码植物识别A型和B型细胞周期蛋白。此外,cyc1Gm的表达在S期的短时间内受到限制,这表明它属于一类新型的植物细胞周期蛋白。到目前为止克隆的18种植物有丝分裂细胞周期蛋白的序列比较表明,它们可以分为四个不同的结构组,在细胞周期进程中具有不同的功能。

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