TY - CHAP
T1 - Myosins in the Nucleus
AU - Maly, Ivan V.
AU - Hofmann, Wilma A.
N1 - Publisher Copyright:
© 2020, Springer Nature Switzerland AG.
PY - 2020
Y1 - 2020
N2 - Although originally characterized as a cytoplasmic protein, myosin of various classes also performs key functions in the nucleus. We review the data concerning the nuclear localization, mechanism of entry, and functional interactions of myosin I, II, V, VI, X, XVI, and XVIII. To date, the first-characterized “nuclear myosin I” (or, in the prevailing nomenclature, myosin IC isoform B) remains the best-studied nuclear myosin, although results are rapidly accumulating that illuminate the roles of other myosin classes, and an outline of a unified picture of myosin functions in the nucleus is beginning to emerge. Reflecting the state of knowledge in this field, the review concentrates on the mechanisms mediating and regulating import of myosin IC into the nucleus and its role, alongside myosin V and VI, in transcription. Myosin functions in chromatin dynamics, epigenetic mechanisms, intranuclear motility, and nuclear export of RNA and protein are also addressed. Partners and regulators of myosin, such as nuclear actin, kinases, and phosphatases are briefly covered. Problem areas are identified and testable hypotheses are offered with an aim of focusing the research efforts on overcoming the gaps on the way toward a systems-level understanding of processes involving nuclear myosins and their place in cell physiology as a whole.
AB - Although originally characterized as a cytoplasmic protein, myosin of various classes also performs key functions in the nucleus. We review the data concerning the nuclear localization, mechanism of entry, and functional interactions of myosin I, II, V, VI, X, XVI, and XVIII. To date, the first-characterized “nuclear myosin I” (or, in the prevailing nomenclature, myosin IC isoform B) remains the best-studied nuclear myosin, although results are rapidly accumulating that illuminate the roles of other myosin classes, and an outline of a unified picture of myosin functions in the nucleus is beginning to emerge. Reflecting the state of knowledge in this field, the review concentrates on the mechanisms mediating and regulating import of myosin IC into the nucleus and its role, alongside myosin V and VI, in transcription. Myosin functions in chromatin dynamics, epigenetic mechanisms, intranuclear motility, and nuclear export of RNA and protein are also addressed. Partners and regulators of myosin, such as nuclear actin, kinases, and phosphatases are briefly covered. Problem areas are identified and testable hypotheses are offered with an aim of focusing the research efforts on overcoming the gaps on the way toward a systems-level understanding of processes involving nuclear myosins and their place in cell physiology as a whole.
KW - Chromatin
KW - Intranuclear motility
KW - Localization
KW - Myosin
KW - Myosin IC
KW - Nuclear actin
KW - Nuclear export
KW - Nuclear import
KW - Nuclear myosin
KW - Nucleolus
KW - Nucleus
KW - RNA processing
KW - Transcription
UR - https://www.scopus.com/pages/publications/85085415283
U2 - 10.1007/978-3-030-38062-5_10
DO - 10.1007/978-3-030-38062-5_10
M3 - Chapter
C2 - 32451861
AN - SCOPUS:85085415283
T3 - Advances in Experimental Medicine and Biology
SP - 199
EP - 231
BT - Advances in Experimental Medicine and Biology
PB - Springer
ER -