Результаты исследований: Научные публикации в периодических изданиях › статья › Рецензирование
Diverse developmental strategies of x chromosome dosage compensation in eutherian mammals. / Shevchenko, Alexander I.; Dementyeva, Elena V.; Zakharova, Irina S. и др.
в: International Journal of Developmental Biology, Том 63, № 3-5, 01.01.2019, стр. 223-233.Результаты исследований: Научные публикации в периодических изданиях › статья › Рецензирование
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TY - JOUR
T1 - Diverse developmental strategies of x chromosome dosage compensation in eutherian mammals
AU - Shevchenko, Alexander I.
AU - Dementyeva, Elena V.
AU - Zakharova, Irina S.
AU - Zakian, Suren M.
PY - 2019/1/1
Y1 - 2019/1/1
N2 - In eutherian mammals, dosage compensation arose to balance X-linked gene expression between sexes and relatively to autosomal gene expression in the evolution of sex chromosomes. Dosage compensation occurs in early mammalian development and comprises X chromosome upregulation and inactivation that are tightly coordinated epigenetic processes. Despite a uniform principle of dosage compensation, mechanisms of X chromosome inactivation and upregulation demonstrate a significant variability depending on sex, developmental stage, cell type, individual, and mammalian species.The review focuses on relationships between X chromosome inactivation and upregulation in mammalian early development.
AB - In eutherian mammals, dosage compensation arose to balance X-linked gene expression between sexes and relatively to autosomal gene expression in the evolution of sex chromosomes. Dosage compensation occurs in early mammalian development and comprises X chromosome upregulation and inactivation that are tightly coordinated epigenetic processes. Despite a uniform principle of dosage compensation, mechanisms of X chromosome inactivation and upregulation demonstrate a significant variability depending on sex, developmental stage, cell type, individual, and mammalian species.The review focuses on relationships between X chromosome inactivation and upregulation in mammalian early development.
KW - Dosage compensation
KW - Mammal
KW - X chromosome inactivation
KW - X chromosome upregulation
KW - Xist
KW - MOUSE
KW - LINKED GENES
KW - dosage compensation
KW - ACTIVE X
KW - PLURIPOTENT STEM-CELLS
KW - FACULTATIVE HETEROCHROMATIN
KW - NONCODING RNA
KW - INACTIVATION
KW - mammal
KW - XIST RNA
KW - GENE-EXPRESSION
KW - UP-REGULATION
KW - Pluripotent Stem Cells/cytology
KW - Genomic Imprinting
KW - Epigenesis, Genetic
KW - Male
KW - RNA, Long Noncoding/genetics
KW - Female
KW - Rodentia/embryology
KW - Gene Silencing
KW - Animals
KW - X Chromosome
KW - Up-Regulation/genetics
KW - X Chromosome Inactivation/genetics
UR - http://www.scopus.com/inward/record.url?scp=85065640174&partnerID=8YFLogxK
U2 - 10.1387/ijdb.180376as
DO - 10.1387/ijdb.180376as
M3 - Article
C2 - 31058299
AN - SCOPUS:85065640174
VL - 63
SP - 223
EP - 233
JO - International Journal of Developmental Biology
JF - International Journal of Developmental Biology
SN - 0214-6282
IS - 3-5
ER -
ID: 20040377