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Nucleolar phosphoproteins B23 and C23 were simultaneously localized in unsynchronized male rat-kangaroo PtK2 cells during mitosis using a mouse monoclonal antibody against protein B23 and a rabbit antibody against protein C23. The distribution of proteins B23 and C23 during mitosis was compared with the distribution of the silver staining protein. During interphase, proteins B23 and C23 were both localized to the nucleolus. As the nucleolus disappeared in prophase, the distribution of protein B23 became nucleoplasmic, whereas most of protein C23 remained associated with the disappearing nucleolus. Throughout metaphase and anaphase protein B23 was found associated with the chromosomes, whereas protein C23 seemed to disappear. When the nucleolus reformed during telophase, protein C23 appeared first in ‘prenucleolar bodies’ and then in the nucleolus, whereas protein B23 did not appear in the nucleolus until late telophase or early G1 phase. Silver staining during mitosis closely paralleled the distribution of protein C23, supporting previous conclusions that protein C23 is a silver staining nucleolus organizer region (NOR) protein [19, 20]. 相似文献
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唐利刘博强李承新 《现代生物医学进展》2012,12(26):5192-5194
Rab23为小GTP结合蛋白,是Ras超家族Rab家族成员,其突变可引起小鼠开脑综合征(open brain syndrome),因此又称为opb基因.它是Sonic hedgehog信号通路的负调控因子,在不同肿瘤中发挥不同作用,并参与机体组织器官的发育和分化.它可能通过转运细胞内蛋白发挥相关作用. 相似文献
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NM23-NDP kinase 总被引:18,自引:0,他引:18
Edith H. Postel 《The international journal of biochemistry & cell biology》1998,30(12):1291-1295
NM23 belongs to a large family of structurally and functionally conserved proteins consisting of 4–6 identically folded subunits of approximately 16–20 kDa. These oligomeric proteins exhibit nucleoside diphosphate kinase (NDPK) activity that catalyzes nonsubstrate specific conversions of nucleoside diphosphates to nucleoside triphosphates. Many NM23 proteins bind DNA. In vivo, NM23–NDPKs regulate a diverse array of cellular events including growth and development. They are also implicated in the pathogenesis and metastasis of tumors. The mechanism whereby NM23 regulates gene expression is proposed to entail DNA-binding and subsequent alterations in promoter DNA structure. Accordingly, NM23 has the potential to become a useful reagent for gene manipulations. 相似文献
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