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Most vertebrate has 1~3 the Mx albumen isomer of the fixed position inside different cell, be located in surely commonly inside the nucleus or afterbirth is qualitative in.

大多数的脊椎动物有1~3个不同细胞内定位的Mx蛋白异构体,一般定位于核内或胞质中。

Cathepsin D and β-tubulin marked with fluorescence were followed in distribution observed by laser scaning microscope, the distribution was from nucleus nearby to cytoplasm and apophysis, which suggested that they took part in traffic in cells.

荧光双标组织蛋白酶D及β-tubulin,共焦激光扫描显微镜下观察,可见二者伴随分布,均由开始的核周分布明显到散在分布于胞质及突起中,说明溶酶体与骨架蛋白密切相关,提示共同参与细胞内的运输。

The result of framework protein and lysosome marked with fluorescence was observed in sym-acorched laser scaning microscope: red fluorescent β-tubulin and green fluorescent eathepsin in nerve cell were seen in distribution in the same sample. The distribution of both was the same, and was located in around nucleus in the early of differentiation, and in cytoplasm and apophysis in the maturity of differentiation.

共焦激光扫描显微镜镜观察荧光双标的骨架蛋白和溶酶体的染色结果:在同一标本上,不同波长的单光激发可分别见到发红色荧光的β-tubulin和发绿色荧光的组织蛋白酶D在神经元内的存在及分布情况,二者的分布区域大致相同,神经元分化初期,较集中分布在核周附近,神经元分化成熟则分布于胞质及突起内。

These results indicated that hSMP-1 might play a significant role in cell division. It must be involed in the formation of spindle, the progress of cytokinesis etc.

以上这些研究结果表明hSMP-1蛋白在细胞分裂过程中具有重要的地位,它与纺锤体的形成、胞质分裂等生命现象密切相关。

During cytokinesis, cortactin localized at Golgi-pools and the new plasma membranes between two daughter cells.

在胞质断裂时期cortactin定位于高尔基体和断裂处子细胞间细胞膜的位置。

Besides these kinesins and chromosomal passengers, some centrosomal proteins also regulated cytokinesis.

除了马达蛋白和染色体旅客蛋白以外,一些中心体蛋白也参与了胞质分裂的调控。

A dramatic reorganization of interpolar microtubules into a highly organized central spindle between the separating chromatids is required for the initiation and execution of cytokinesis.

在向两极分离的染色单体之间的微管很规律地重组成高度有序的中心纺锤体,这是开始和进行胞质分裂的必要条件。

Then, the experiment that edelfosine inhibited the phosphatization of Spm1 was carried out in order to elucidate whether edelfosine affect on the phosphatization of Spm1 induced via Mid2 and inhibited via Pmp1.(1)、On the inhibition experiment of parallel growth of S. pombe wild-type cells, spm1 mutants, pmp1 mutants, mid2 mutants and relevant retransform strains, the spm1 mutants grew well treated with 5.0μM and 10.0μM edelfosine for 24 h; the growth ratio of spm1 mutants had a statistic significance in between the cells previously mentioned and the S.

(1)、通过野生型粟酒裂殖酵母和胞质分裂突变体spm1Δ、pmp1Δ、mid2Δ及其再转化株对依地福新的平行生长抵抗试验,进一步确定依地福新对spm1、pmp1、mid2基因的影响;(2)、应用依地福新对Spm1磷酸化的影响试验,阐明依地福新是否通过影响Mid2蛋白和Pmp1蛋白的表达而影响Spm1蛋白的磷酸化。

Institute of Botany, the Chinese Academy of Sciences, Beijing 100093Abstract Plasmodesma is a supracellular structure of plant organism. It provides a direct cell-to-cell cytoplasmic pathway for material transport and message transference, and converts the colonies of independent cells into an interconnected symplast system.

胞间连丝为多细胞植物有机体提供了一个直接的细胞间物质运输和信息传递的细胞质通道,把一个个独立的"细胞王国"转变成相互连接的共质体,它是当今细胞生物学中十分活跃的研究领域。

In prophase, it localized on the microtubule organizing-center. In metaphase, it co-localized with α-tublin completely on spindle. In anaphase, it co-localized with α-tublin in aster and mid-zone. In telophase, it co-localized with α-tublin in cytoplasmic bridge connecting the two daughter cells.

在分裂前期,hSMP-1蛋白位于微管组织中心区域;在分裂中期,hSMP-1蛋白与组成纺锤体的微管呈完全共定位;在分裂后期,hSMP-1蛋白与星体和纺锤体中区的微管呈共定位关系;在分裂末期,hSMP-1蛋白则与两个子细胞之间的胞质桥完全共定位。

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