Libri sul tema "Transcriptional Regulation"

Segui questo link per vedere altri tipi di pubblicazioni sul tema: Transcriptional Regulation.

Cita una fonte nei formati APA, MLA, Chicago, Harvard e in molti altri stili

Scegli il tipo di fonte:

Vedi i top-50 libri per l'attività di ricerca sul tema "Transcriptional Regulation".

Accanto a ogni fonte nell'elenco di riferimenti c'è un pulsante "Aggiungi alla bibliografia". Premilo e genereremo automaticamente la citazione bibliografica dell'opera scelta nello stile citazionale di cui hai bisogno: APA, MLA, Harvard, Chicago, Vancouver ecc.

Puoi anche scaricare il testo completo della pubblicazione scientifica nel formato .pdf e leggere online l'abstract (il sommario) dell'opera se è presente nei metadati.

Vedi i libri di molte aree scientifiche e compila una bibliografia corretta.

1

L, McKnight Steven, e Yamamoto Keith R, a cura di. Transcriptional regulation. Plainview, N.Y: Cold Spring Harbor Laboratory Press, 1992.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
2

Vancura, Ales, a cura di. Transcriptional Regulation. New York, NY: Springer New York, 2012. http://dx.doi.org/10.1007/978-1-61779-376-9.

Testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
3

MUKHTAR, SHAHID, a cura di. Modeling Transcriptional Regulation. New York, NY: Springer US, 2021. http://dx.doi.org/10.1007/978-1-0716-1534-8.

Testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
4

Transcriptional regulation: Methods and protocols. New York: Humana Press, 2012.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
5

Dassi, Erik, a cura di. Post-Transcriptional Gene Regulation. New York, NY: Springer US, 2022. http://dx.doi.org/10.1007/978-1-0716-1851-6.

Testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
6

Wilusz, Jeffrey, a cura di. Post-Transcriptional Gene Regulation. Totowa, NJ: Humana Press, 2008. http://dx.doi.org/10.1007/978-1-59745-033-1.

Testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
7

Dassi, Erik, a cura di. Post-Transcriptional Gene Regulation. New York, NY: Springer New York, 2016. http://dx.doi.org/10.1007/978-1-4939-3067-8.

Testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
8

Jeffrey, Wilusz, a cura di. Post-transcriptional gene regulation. Totowa, N.J: Humana Press, 2008.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
9

Courey, Albert J. Mechanisms in transcriptional regulation. Malden, MA: Blackwell Pub., 2008.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
10

Wajapeyee, Narendra, e Romi Gupta, a cura di. Eukaryotic Transcriptional and Post-Transcriptional Gene Expression Regulation. New York, NY: Springer New York, 2017. http://dx.doi.org/10.1007/978-1-4939-6518-2.

Testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
11

Dudek, Serena M., a cura di. Transcriptional Regulation by Neuronal Activity. Boston, MA: Springer US, 2008. http://dx.doi.org/10.1007/978-0-387-73609-9.

Testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
12

NATO/CEC, Advanced Research Workshop on "Post-Transcriptional Control of Gene Expression" (1990 Goslar Germany). Post-transcriptional control of gene expression. Berlin: Springer-Verlag, 1990.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
13

1958-, Resnekov Orna, e Gabain Alexander von 1950-, a cura di. Post-transcriptional control of gene expression. Berlin: Springer-Verlag, 1996.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
14

Volk, Talila, e Karen Artzt, a cura di. Post-Transcriptional Regulation by STAR Proteins. Boston, MA: Springer US, 2010. http://dx.doi.org/10.1007/978-1-4419-7005-3.

Testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
15

Menon, PhD, K. M. J., e Aaron Goldstrohm, PhD, a cura di. Post-transcriptional Mechanisms in Endocrine Regulation. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-25124-0.

Testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
16

Babu, M. Madan. Bacterial gene regulation and transcriptional networks. Norfolk, UK: Caister Academic Press, 2013.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
17

B, Harford Joe, e Morris David R. 1939-, a cura di. mRNA metabolism & post-transcriptional gene regulation. New York: Wiley-Liss, 1997.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
18

Sen, Ganes C. Transcriptional regulation in the interferon system. Austin: Landes Bioscience, 1997.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
19

Hime, Gary, e Helen Abud, a cura di. Transcriptional and Translational Regulation of Stem Cells. Dordrecht: Springer Netherlands, 2013. http://dx.doi.org/10.1007/978-94-007-6621-1.

Testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
20

Clark, Andrew Richard. Transcriptional regulation of the human insulin gene. Birmingham: University ofBirmingham, 1992.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
21

1938-, Yaniv Moshe, e Ghysdael J, a cura di. Oncogenes as transcriptional regulators. Basel: Birkhäuser Verlag, 1997.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
22

Lawrence, Privalsky Martin, a cura di. Transcriptional corepressors: Mediators of eukaryotic gene repression. Berlin: Springer, 2001.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
23

L, Peterson Craig, e Smale Stephen T, a cura di. Transcriptional regulation in eukaryotes: Concepts, strategies, and techniques. 2a ed. Cold Spring Harbor, N.Y: Cold Spring Harbor Laboratory Press, 2009.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
24

T, Smale Stephen, e NetLibrary Inc, a cura di. Transcriptional regulation in eukaryotes: Concepts, strategies, and techniques. Cold Spring Harbor, NY: Cold Spring Harbor Laboratory Press, 2000.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
25

Brubacher, Mary Grace. Transcriptional regulation of the human alpha-antichymotrypsin gene. Ottawa: National Library of Canada = Bibliothèque nationale du Canada, 1992.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
26

Wade, Joseph Thomas. Transcriptional regulation in the Escherichia Coli melibiose eperon. Birmingham: University of Birmingham, 2001.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
27

Kitaygorodsky, Alexander. Post-transcriptional gene expression regulation in developmental disorders. [New York, N.Y.?]: [publisher not identified], 2021.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
28

Eric, Verdin, a cura di. Histone deacetylases: Transcriptional regulation and other cellular functions. Totowa, N.J: Humana Press, 2006.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
29

Leung, Derek K. M. Transcriptional regulation of E-cadherin in Drosophila melanogaster. Ottawa: National Library of Canada, 2001.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
30

Witold, Filipowicz, e Hohn Thomas 1938-, a cura di. Post-transcriptional control of gene expression in plants. Dordrecht: Kluwer Academic Publishers, 1996.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
31

Transcriptional Regulation. Cold Spring Harbor Laboratory Pr, 1993.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
32

Ghedira, Kais, a cura di. Transcriptional and Post-transcriptional Regulation. InTech, 2018. http://dx.doi.org/10.5772/intechopen.72023.

Testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
33

Vancura, Ales. Transcriptional Regulation: Methods and Protocols. Humana Press, 2016.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
34

Transcriptional and Post-Transcriptional Regulation [Working Title]. IntechOpen, 2019. http://dx.doi.org/10.5772/intechopen.73764.

Testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
35

Dassi, Erik. Post-Transcriptional Gene Regulation. Springer, 2022.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
36

Dassi, Erik. Post-Transcriptional Gene Regulation. Springer New York, 2015.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
37

Post-Transcriptional Gene Regulation. Humana Press, 2007.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
38

Mechanisms in Transcriptional Regulation. Wiley-Blackwell, 2008.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
39

Courey, Albert J. Mechanisms in Transcriptional Regulation. Wiley & Sons, Incorporated, John, 2009.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
40

Dassi, Erik. Post-Transcriptional Gene Regulation. Springer New York, 2016.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
41

Dassi, Erik. Post-Transcriptional Gene Regulation. Springer, 2021.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
42

Wilusz, Jeffrey. Post-Transcriptional Gene Regulation. Humana Press, 2010.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
43

Albensi, Benedict C., e Jelena Djordjevic, a cura di. The Transcriptional Regulation of Memory. Frontiers Media SA, 2016. http://dx.doi.org/10.3389/978-2-88919-865-8.

Testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
44

Luis de la Torre Ubieta. Transcriptional regulation of neuronal polarity. 2010.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
45

Yang, Jin, Pei Han, Wei Li e Ching-Pin Chang. Epigenetics and post-transcriptional regulation of cardiovascular development. A cura di José Maria Pérez-Pomares, Robert G. Kelly, Maurice van den Hoff, José Luis de la Pompa, David Sedmera, Cristina Basso e Deborah Henderson. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780198757269.003.0032.

Testo completo
Abstract (sommario):
Cardiac organogenesis requires the control of gene expression at distinct developmental windows in order to organize morphogenetic steps in the correct sequence for heart development. This is facilitated by concerted regulation at three levels: chromatin, transcription, and post-transcriptional modifications. Epigenetic regulation at the chromatin level changes the chromatin scaffold of DNA to regulate accessibility of the DNA sequence to transcription factors for genetic activation or repression. At the genome, long non-coding RNAs work with epigenetic factors to alter the chromatin scaffold or form DNA-RNA complexes at specific genomic loci to control the transcription of genetic information. After RNA transcription, the expression of genetic information can be further modified by microRNAs. Each layer of gene regulation requires the participation of many factors, with their combinatorial interactions providing variations of genetic expression at distinct pathophysiological phases of the heart. The major functions of chromatin remodellers and non-coding RNAs are discussed.
Gli stili APA, Harvard, Vancouver, ISO e altri
46

Post-transcriptional control of gene expression. Berlin: Springer, 1996.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
47

Gabain, Alexander von, e Orna Resnekov. Post-Transcriptional Control of Gene Expression. Springer London, Limited, 2013.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
48

Gabain, Alexander von, e Orna Resnekov. Post-Transcriptional Control of Gene Expression. Springer London, Limited, 2011.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
49

Fulcoli, F. Gabriella, e Antonio Baldini. Transcriptional regulation of early cardiovascular development. A cura di José Maria Pérez-Pomares, Robert G. Kelly, Maurice van den Hoff, José Luis de la Pompa, David Sedmera, Cristina Basso e Deborah Henderson. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780198757269.003.0006.

Testo completo
Abstract (sommario):
The two major cardiac cell lineages of the vertebrate heart, the first and second cardiac fields (FHF and SHF), have different developmental ontogeny and thus different transcription programs. Most remarkably, the fate of cardiac progenitors (CPs) of the FHF is restricted to cardiomyocyte differentiation. In contrast, SHF CPs, which are specified independently, are maintained in a multipotent state for a relatively longer developmental time and can differentiate into multiple cell types. The identity of the transcription factors and regulatory elements involved in progenitor cell programming and fate are only now beginning to emerge. Apparent inconsistencies between studies based on tissue culture and in vivo embryonic studies confirm that the ontogeny of cardiac progenitors is strongly driven or affected by regionalization, and thus by the signals that they receive in different regions. This chapter summarizes current knowledge about transcription factors and mechanisms driving CP ontogeny, with special focus on SHF development.
Gli stili APA, Harvard, Vancouver, ISO e altri
50

Jiang, Chunjie, Shengli Li, Shibiao Wan, Peng Hu e Yongsheng Kevin Li, a cura di. Transcriptional Regulation in Metabolism and Immunology. Frontiers Media SA, 2022. http://dx.doi.org/10.3389/978-2-88974-573-9.

Testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
Offriamo sconti su tutti i piani premium per gli autori le cui opere sono incluse in raccolte letterarie tematiche. Contattaci per ottenere un codice promozionale unico!

Vai alla bibliografia