mtmt
Magyar Tudományos Művek Tára
XML
JSON
Átlépés a keresőbe
In English
Contributions of alternative splicing to muscle type development and function
Nikonova, E.
;
Kao, S.-Y.
;
Spletter, M.L. ✉
Angol nyelvű Összefoglaló cikk (Folyóiratcikk) Tudományos
Megjelent:
SEMINARS IN CELL & DEVELOPMENTAL BIOLOGY 1084-9521 1096-3634
104
pp. 65-80
2020
SJR Scopus - Cell Biology: Q1
Azonosítók
MTMT: 31202572
DOI:
10.1016/j.semcdb.2020.02.003
WoS:
000544565000007
Scopus:
85079417626
PubMed:
32070639
Animals possess a wide variety of muscle types that support different kinds of movements. Different muscles have distinct locations, morphologies and contractile properties, raising the question of how muscle diversity is generated during development. Normal aging processes and muscle disorders differentially affect particular muscle types, thus understanding how muscles normally develop and are maintained provides insight into alterations in disease and senescence. As muscle structure and basic developmental mechanisms are highly conserved, many important insights into disease mechanisms in humans as well as into basic principles of muscle development have come from model organisms such as Drosophila, zebrafish and mouse. While transcriptional regulation has been characterized to play an important role in myogenesis, there is a growing recognition of the contributions of alternative splicing to myogenesis and the refinement of muscle function. Here we review our current understanding of muscle type specific alternative splicing, using examples of isoforms with distinct functions from both vertebrates and Drosophila. Future exploration of the vast potential of alternative splicing to fine-tune muscle development and function will likely uncover novel mechanisms of isoform-specific regulation and a more holistic understanding of muscle development, disease and aging. © 2020 The Authors
Idézett közlemények (6)
Hivatkozás stílusok:
IEEE
ACM
APA
Chicago
Harvard
CSL
Másolás
Nyomtatás
2025-05-21 08:13
×
Lista exportálása irodalomjegyzékként
Hivatkozás stílusok:
IEEE
ACM
APA
Chicago
Harvard
Nyomtatás
Másolás