Эчтәлеккә күчү

MAP2

Wikipedia — ирекле энциклопедия проектыннан ([http://tt.wikipedia.org.ttcysuttlart1999.aylandirow.tmf.org.ru/wiki/MAP2 latin yazuında])
MAP2
Нинди таксонда бар H. sapiens[1]
Кодлаучы ген MAP2[d][1]
Молекуляр функция tubulin binding[d][2], связывание с белками плазмы[d][3], structural molecule activity[d][4], dystroglycan binding[d][5], calmodulin binding[d][2], microtubule binding[d][6][6], microtubule binding[d][7][2][2][…] һәм tau protein binding[d][8]
Күзәнәк компоненты ядрышко[d][2], микротрубочка[d][2], microtubule associated complex[d][4], цитоскелет[d][2], цитоплазма[6][6], цитозоль[d][6], дендрит[d][2][2][2], cell projection[d][2], внутренний компонент клетки[d][6], постсинаптическое уплотнение[d][2], nuclear periphery[d][2], neuron projection[d][2][9], soma[d][6], dendritic shaft[d][6], cell body[d][2], CA3 pyramidal cell dendrite[d][2], цитоплазма[2][2][2], цитозоль[d][2][2], dendrite cytoplasm[d][2], soma[d][2][2], axon initial segment[d][2], dendritic shaft[d][2][2], Аксонный холмик[d][2][2], dendritic growth cone[d][2], main axon[d][2], dendritic branch[d][2], basal dendrite[d][2], primary dendrite[d][2], distal dendrite[d][2], apical distal dendrite[d][2], dendritic filopodium[d][2], proximal dendrite[d][2] һәм proximal neuron projection[d][2][2]
Биологик процесс neuron projection development[d][10], microtubule cytoskeleton organization[d][6], microtubule bundle formation[d][2][2], dendrite morphogenesis[d][11], central nervous system neuron development[d][11][2], axonogenesis[d][2], dendrite development[d][6], establishment of cell polarity[d][2], regulation of axonogenesis[d][2], cellular response to organic substance[d][2], microtubule cytoskeleton organization[d][2][2][9], dendrite development[d][7][2], negative regulation of axon extension[d][2][2], regulation of microtubule polymerization[d][12], negative regulation of microtubule polymerization[d][2], neuron projection development[d][11][9], positive regulation of anterograde dense core granule transport[d][2], regulation of organelle transport along microtubule[d][2], positive regulation of anterograde synaptic vesicle transport[d][2] һәм negative regulation of microtubule binding[d][2]

MAP2 (ингл. ) — аксымы, шул ук исемдәге ген тарафыннан кодлана торган югары молекуляр органик матдә.[13][14]

  1. 1 2 UniProt
  2. 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 GOA
  3. Tomita M. A comprehensive resource of interacting protein regions for refining human transcription factor networks, A Comprehensive Resource of Interacting Protein Regions for Refining Human Transcription Factor Networks // PLOS ONE / PLOS ONE EditorsPLoS, 2010. — ISSN 1932-6203doi:10.1371/JOURNAL.PONE.0009289PMID:20195357
  4. 1 2 B. Shafit-Zagardo, N. Kalcheva Making sense of the multiple MAP-2 transcripts and their role in the neuron // Mol. Neurobiol.Springer Science+Business Media, 1998. — ISSN 0893-7648; 1559-1182doi:10.1007/BF02740642PMID:9588626
  5. Cerecedo D., Cisneros B., Suárez-Sánchez R. et al. beta-Dystroglycan modulates the interplay between actin and microtubules in human-adhered platelets // Br. J. Haematol.Wiley-Blackwell, Wiley, 2008. — ISSN 0007-1048; 1365-2141doi:10.1111/J.1365-2141.2008.07048.XPMID:18341635
  6. 1 2 3 4 5 6 7 8 9 10 GOA
  7. 1 2 Atapour N., Hensch T. K., Hirokawa N. Defects in Synaptic Plasticity, Reduced NMDA-Receptor Transport, and Instability of Postsynaptic Density Proteins in Mice Lacking Microtubule-Associated Protein 1A // J. Neurosci. / M. PicciottoSociety for Neuroscience, 2015. — ISSN 0270-6474; 1529-2401doi:10.1523/JNEUROSCI.2671-15.2015PMID:26609151
  8. Guo T., Noble W., Hanger D. P. Roles of tau protein in health and disease // Acta Neuropathol. (Berl)Springer Science+Business Media, 2017. — ISSN 0001-6322; 1432-0533doi:10.1007/S00401-017-1707-9PMID:28386764
  9. 1 2 3 Livstone M. S., Thomas P. D., Lewis S. E. et al. Phylogenetic-based propagation of functional annotations within the Gene Ontology consortium // Brief. Bioinform.OUP, 2011. — ISSN 1467-5463; 1477-4054doi:10.1093/BIB/BBR042PMID:21873635
  10. Jovanov-Milošević N. Morphology, molecular phenotypes and distribution of neurons in developing human corpus callosum // Eur. J. Neurosci.Wiley-Blackwell, Wiley, 2010. — ISSN 0953-816X; 1460-9568doi:10.1111/J.1460-9568.2010.07400.XPMID:20846339
  11. 1 2 3 Jovanov-Milošević N. Morphology, molecular phenotypes and distribution of neurons in developing human corpus callosum // Eur. J. Neurosci.Wiley-Blackwell, Wiley, 2010. — ISSN 0953-816X; 1460-9568doi:10.1111/J.1460-9568.2010.07400.XPMID:20846339
  12. CX G., Wegiel J, Lidsky T et al. Regulation of phosphorylation of neuronal microtubule-associated proteins MAP1b and MAP2 by protein phosphatase-2A and -2B in rat brain // Brain Res.Elsevier, 2000. — ISSN 0006-8993; 1872-6240doi:10.1016/S0006-8993(99)02294-5PMID:10640627
  13. HUGO Gene Nomenclature Commitee, HGNC:29223 (ингл.). әлеге чыганактан 2015-10-25 архивланган. 18 сентябрь, 2017 тикшерелгән. 2015 елның 25 октябрь көнендә архивланган
  14. UniProt, Q9ULJ7 (ингл.). 18 сентябрь, 2017 тикшерелгән.
  • Степанов В.М. (2005). Молекулярная биология. Структура и функция белков. Москва: Наука. ISBN 5-211-04971-3.(рус.)
  • Bruce Alberts, Alexander Johnson, Julian Lewis, Martin Raff, Keith Roberts, Peter Walter (2002). Molecular Biology of the Cell (вид. 4th). Garland. ISBN 0815332181.(ингл.)