MARC details
| 000 -CABECERA |
| campo de control de longitud fija |
04842nam a2200325 i 4500 |
| 001 - NÚMERO DE CONTROL |
| campo de control |
398909 |
| 003 - IDENTIFICADOR DEL NÚMERO DE CONTROL |
| campo de control |
ES-MaUEC |
| 005 - FECHA Y HORA DE LA ÚLTIMA TRANSACCIÓN |
| campo de control |
20240315185700.0 |
| 006 - CÓDIGOS DE INFORMACIÓN DE LONGITUD FIJA--CARACTERÍSTICAS DEL MATERIAL ADICIONAL |
| campo de control de longitud fija |
a|||| o|||| 00| 0 |
| 007 - CAMPO FIJO DE DESCRIPCIÓN FÍSICA--INFORMACIÓN GENERAL |
| campo de control de longitud fija |
cr nn 008mamaa |
| 008 - DATOS DE LONGITUD FIJA--INFORMACIÓN GENERAL |
| campo de control de longitud fija |
230929s2023 si | o |||| 0|eng d |
| 020 ## - NÚMERO INTERNACIONAL ESTÁNDAR DEL LIBRO |
| Número Internacional Estándar del Libro |
9789819948864 |
| 024 7# - IDENTIFICADOR DE OTROS ESTÁNDARES |
| Número estándar o código |
10.1007/978-981-99-4886-4 |
| Fuente del número o código |
doi |
| 040 ## - FUENTE DE LA CATALOGACIÓN |
| Centro catalogador/agencia de origen |
ES-MaUEC |
| Lengua de catalogación |
spa |
| Centro/agencia transcriptor |
ES-MaUEC |
| Centro/agencia modificador |
ES-MaUEC |
| 050 #4 - SIGNATURA TOPOGRÁFICA DE LA BIBLIOTECA DEL CONGRESO |
| Número de clasificación |
QH506 |
| Número de documento/Ítem |
2023 EB |
| 245 00 - MENCIÓN DE TÍTULO |
| Título |
Phase Separation in Living Cells : |
| Resto del título |
Benefits and Risks |
| Mención de responsabilidad, etc. |
edited by Riki Kurokawa |
| 250 ## - MENCIÓN DE EDICIÓN |
| Mención de edición |
1st ed. 2023 |
| 264 #1 - PRODUCCIÓN, PUBLICACIÓN, DISTRIBUCIÓN, FABRICACIÓN Y COPYRIGHT |
| Producción, publicación, distribución, fabricación y copyright |
Singapore |
| Nombre del de productor, editor, distribuidor, fabricante |
Springer Nature Singapore |
| Fecha de producción, publicación, distribución, fabricación o copyright |
2023 |
| 300 ## - DESCRIPCIÓN FÍSICA |
| Extensión |
1 recurso en línea |
| 336 ## - TIPO DE CONTENIDO |
| Término de tipo de contenido |
texto |
| Código de tipo de contenido |
txt |
| Fuente |
rdacontent |
| 337 ## - TIPO DE MEDIO |
| Nombre/término del tipo de medio |
electrónico |
| Código del tipo de medio |
c |
| Fuente |
rdamedia |
| 338 ## - TIPO DE SOPORTE |
| Nombre/término del tipo de soporte |
recurso electrónico |
| Código del tipo de soporte |
cr |
| Fuente |
rdacarrier |
| 505 0# - NOTA DE CONTENIDO CON FORMATO |
| Nota de contenido con formato |
Chapter 1. FUS aggregation by shear stress on pipetting and its suppression by non-coding RNA -- Chapter 2. Basics and recent advances in computational and theoretical methods for understanding the liquid-liquid phase separation -- Chapter 3.Promotion of liquid-liquid phase separation by G-quadruplex DNA and RNA -- Chapter 4. Phase regulation by chaperons -- Chapter 5. Regulation of aggregation of intrinsically disordered protein through phase separation: Risk management of phase separation -- Chapter 6. Molecular mechanisms of phase transition/separation of protein low-complexity sequences -- Chapter 7. Winding and Tangling. An Initial Phase of Membrane-less Organelle Formation (from a viewpoint of Cajal Bodies) -- Chapter 8. Formation and function of phase separated nuclear bodies directed by architectural noncoding RNA -- Chapter 9. Force-dependent remodeling of cell-to-cell adhesion through the regulation of phase separation -- Chapter 10. Neuronal RNA granules: Phase separation, dynamics, and higher brain functions -- Chapter 11. Liquid-liquid phase separation in structure and function of nuclear pore complex -- Chapter 12. Phase Separation Orchestrates Cancer Signaling: Biomolecular condensates as a promising target for cancer therapy -- Chapter 13. Regulatory interaction of intrinsically disordered regions of pathogenic proteins in neurodegenerative diseases -- Chapter 14. Functional properties of phase separation and intranuclear complex of FUS in the pathogenesis of ALS/FTLD -- Chapter 15. Functional responses of microglia to amyloid plaques -- Chapter 16. Emerging role of phage separation in COVID-19. |
| 520 ## - SUMARIO, ETC. |
| Sumario, etc. |
This book presents the latest cutting-edge research on phase separation. It discusses the benefits and risks of phase separation for living cells from the perspectives of physics, chemistry, biology, and medicine. Phase separation is a physico-chemical process that induces a single solution of solvent and intrinsically disordered proteins (IDPs) to separate into two phases, one phase containing only solvent and the other containing IDPs in the solvent. A key molecule in phase separation is the intrinsically disordered region (IDR) proteins (IDPs), mostly comprised of RNA-binding proteins (RBPs). One of the major roles of phase separation is to generate condensates, membrane-less organelles including stress granule, Cajal body, and nucleolus. Biological actions of phase separation in various aspects of science have received increasing attention in recent years. The book consists of four parts; Part I on physics and chemistry includes topics on structural biology of RBP FUS/TLS and chaperone for phase separation, computational approach of phase separation, and chemistry of G-quadruplex of DNA and RNA. Part II on molecular biology presents molecular mechanism of IDR sequence phase separation and potential cellular function of these labile fibers, formation of membrane-less organelles, and roles of noncoding RNAs in phase separation. Part III on biology covers topics from nuclear pore complex, developmental biology regarding force-dependent remodeling, and neurobiology and higher order brain functions. Finally, Part IV on medicine presents condensates and cancer therapy, pathogenesis of neurodegenerative diseases based on IDPs, and responses of microglia to amyloid. The last chapter highlights the latest topic on how the SARS-Cov-2 virus takes advantage of phase separation for its infections. This book brings together the studies of phase separation in each area in a single volume. The comprehensive approach provides new insights to the research and will benefit the readers by responding to the emerging needs for understanding phase separation. |
| 988 ## - NOTA LOCAL 598 |
| Nota local 598 (boletines) |
Springer_BiomedLife_2023 |
| 650 #7 - PUNTO DE ACCESO ADICIONAL DE MATERIA--TÉRMINO DE MATERIA |
| Fuente del encabezamiento o término |
embne |
| 9 (RLIN) |
139103 |
| Término de materia o nombre geográfico como elemento de entrada |
Biología molecular |
| 856 40 - LOCALIZACIÓN Y ACCESO ELECTRÓNICOS |
| Identificador Uniforme del Recurso |
https://go.openathens.net/redirector/universidadeuropea.es?url=https://doi.org/10.1007/978-981-99-4886-4 |
| Nota pública |
Acceso a este recurso digital (usuarios Universidad Europea de Madrid) |
| 942 ## - ELEMENTOS DE PUNTO DE ACCESO ADICIONAL (KOHA) |
| Fuente del sistema de clasificación o colocación |
Library of Congress Classification |
| Tipo de ítem Koha |
LIBRO-E NO PRÉSTAMO |
| 998 ## - DATOS ESTADÍSTICOS |
| Fecha de catalogación |
03/2024 |
| Tipo de materia |
E-book |
| Catalogador |
Isabel Alonso |
| Catalogado |
Sí |