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2011年07月12日

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2011年07月12日

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2010年05月24日

【期刊论文】TIPT2 and geminin interact with basal transcription factors to synergize in transcriptional regulation

罗凌飞, Mara E Pitulescu, Martin Teichmann, Lingfei Luo and Michael Kessel*

BMC Biochemistry 2009, 10: 16,-0001,():

-1年11月30日

摘要

Background: The re-replication inhibitor Geminin binds to several transcription factors including homeodomain proteins, and to members of the polycomb and the SWI/SNF complexes. Results: Here we describe the TATA-binding protein-like factor-interacting protein (TIPT) isoform 2, as a strong binding partner of Geminin. TIPT2 is widely expressed in mouse embryonic and adult tissues, residing both in cyto- and nucleoplasma, and enriched in the nucleolus. Like Geminin, also TIPT2 interacts with several polycomb factors, with the general transcription factor TBP (TATA box binding protein), and with the related protein TBPL1 (TRF2). TIPT2 synergizes with geminin and TBP in the activation of TATA box-containing promoters, and with TBPL1 and geminin in the activation of the TATA-less NF1 promoter. Geminin and TIPT2 were detected in the chromatin near TBP/TBPL1 binding sites. Conclusion: Together, our study introduces a novel transcriptional regulator and its function in cooperation with chromatin associated factors and the basal transcription machinery.

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2010年05月24日

【期刊论文】Genetic mapping of Foxb1-cell lineage shows migration from caudal diencephalon to telencephalon and lateral hypothalamus

罗凌飞, Tianyu Zhao, , * Nora Szabo, * Jun Ma, Lingfei Luo, Xunlei Zhou and Gonzalo Alvarez-Bolado

European Journal of Neuroscience, Vol. 28, pp. 1941-1955, 2008,-0001,():

-1年11月30日

摘要

The hypothalamus is a brain region with vital functions, and alterations in its development can cause human disease. However, we still do not have a complete description of how this complex structure is put together during embryonic and early postnatal stages. Radially oriented, outside-in migration of cells is prevalent in the developing hypothalamus. In spite of this, cell contingents from outside the hypothalamus as well as tangential hypothalamic migrations also have an important role. Here we study migrations in the hypothalamic primordium by genetically labeling the Foxb1 diencephalic lineage. Foxb1 is a transcription factor gene expressed in the neuroepithelium of the developing neural tube with a rostral expression boundary between caudal and rostral diencephalon, and therefore appropriate for marking migrations from caudal levels into the hypothalamus. We have found a large, longitudinally oriented migration stream apparently originating in the thalamic region and following an axonal bundle to end in the anterior portion of the lateral hypothalamic area. Additionally, we have mapped a specific expansion of the neuroepithelium into the rostral diencephalon. The expanded neuroepithelium generates abundant neurons for the medial hypothalamus at the tuberal level. Finally, we have uncovered novel diencephalon-to-telencephalon migrations into septum, piriform cortex and amygdala.

axon-dependent,, forkhead genes,, prethalamus,, tangential,, thalamus

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2010年05月24日

【期刊论文】Regulation of Geminin Functions by Cell Cycle-Dependent Nuclear-Cytoplasmic Shuttling▽

罗凌飞, Lingfei Luo, * Yvonne Uerlings, Nicole Happel, Naisana S. Asli, Hendrik Knoetgen, and Michael Kessel

MOLECULAR AND CELLULAR BIOLOGY, July 2007, p. 4737-4744,-0001,():

-1年11月30日

摘要

The geminin protein functions both as a DNA rereplication inhibitor through association with Cdt1 and as a repressor of Hox gene transcription through the polycomb pathway. Here, we report that the functions of avian geminin are coordinated with and regulated by cell cycle-dependent nuclear-cytoplasmic shuttling. In S phase, geminin enters nuclei and inhibits both loading of the minichromosome maintenance (MCM) complex onto chromatin and Hox gene transcription. At the end of mitosis, geminin is exported from nuclei by the exportin protein Crm1 and is unavailable in the nucleus during the next G1 phase, thus ensuring proper chromatin loading of the MCM complex and Hox gene transcription. This mechanism for regulating the functions of geminin adds to distinct mechanisms, such as protein degradation and ubiquitination, applied in other vertebrates.

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    西南大学,四川

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