New Players in the Neuroendocrine System : A Journey Through the Non ‐ coding RNA World

semanticscholar(2015)

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摘要
Alonso, C.R. (2012) A complex ‘mRNA degradation code’ controls gene expression during animal development. Trends in Genetics, 28, 7888. Alvarez‐Saavedra, M., Antoun, G., Yanagiya, A., et al. (2010) miRNA‐132 orchestrates chromatin remodeling and translational control of the circadian clock. Human Molecular Genetics, 20, 731–751. [A very elegant study describing coordinated regulation of epigenetic mechanisms by miR‐132 in fine‐tuning of the master circadian pacemaker.] Amar, L., Benoit, C., Beaumont, G., et al. (2012) MicroRNA expression profiling of hypothalamic arcuate and paraventricular nuclei from single rats using Illumina sequencing technology. Journal of Neuroscience Methods, 209, 134–143. [A thorough characterization of microRNAs in specific hypothalamic nuclei.] Amaral, F.C., Torres, N., Saggioro, F., et al. (2009) MicroRNAs differentially expressed in ACTH‐secreting pituitary tumors. Journal of Clinical Endocrinology and Metabolism, 94, 320–323. Asa, S.L. and Ezzat, S. (1998) The cytogenesis and pathogenesis of pituitary adenomas. Endocrine Reviews, 19, 798–827. [Classification of pituitary neoplasms based on abberant mechanisms, cytoarchitecture and function.] Asa, S.L. and Ezzat, S. (2009) The pathogenesis of pituitary tumors. Annual Review of Pathology, 4, 97–126. Bak, M., Silahtaroglu, A., Moller, M., et al. (2008) MicroRNA expression in the adult mouse central nervous system. RNA, 14, 432–444. [An early inventory of microRNA expression profiles in several mouse brain regions, including hypothalamus and pituitary gland.] Baldassarre, A. and Masotti, A. (2012) Long non‐coding RNAs and p53 regulation. International Journal of Molecular Sciences, 13, 16708–16717. Bandres, E., Cubedo, E., Agirre, X., et al. (2006) Identification by Real‐time PCR of 13 mature microRNAs differentially expressed in colorectal cancer and non‐tumoral tissues. Molecular Cancer, 5, 29. Barbareschi, M., Roldo, C., Zamboni, G., et al. (2004) CDX‐2 homeobox gene product expression in neuroendocrine tumors: its role as a marker of intestinal neuroendocrine tumors. American Journal of Surgical Pathology, 28,1169–1176. Ben‐Moshe, Z., Alon, S., Mracek, P., et al. (2014) The light‐induced transcriptome of the zebrafish pineal gland reveals complex regulation of the circadian clockwork by light. Nucleic Acids Research, 42, 3750–3767. [A description of the microRNA role in regulation of melatonin by light.] Benoit, C., Ould‐Hamouda, H., Crepin, D., Gertler, A., Amar, L. and Taouis, M. (2013) Early leptin blockade predisposes fat‐fed rats to overweight and modifies hypothalamic microRNAs. Journal of Endocrinology, 218, 35–47. [Evidence that early life events affect hypothalamic microRNA expression in adulthood, contributing to the metabolic syndrome.] Borges, S., Gayer‐Anderson, C. and Mondelli, V. (2013) A systematic review of the activity of the hypothalamic‐ pituitary‐adrenal axis in first episode psychosis. Psychoneuroendocrinology, 38, 603–611. Bottoni, A., Zatelli, M.C., Ferracin, M., et al. (2007) Identification of differentially expressed microRNAs by microarray: a possible role for microRNA genes in pituitary adenomas. Journal of Cellular Physiology, 210, 370–377. [One of the first and most thorough assessments of the role of microRNAs in pituitary tumors.]
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