Home LiteratureArticle Details
PMID: 7892256 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Expression of the zinc-finger gene PLZF at rhombomere boundaries in the vertebrate hindbrain.

Cook M, Gould A, Brand N, Davies J, Strutt P, Shaknovich R, Licht J, Waxman S, Chen Z, Gluecksohn-Waelsch S

Abstract

To investigate the potential biological role(s) of the PLZF gene, discovered as a fusion with the RARA locus in a patient with acute promyelocytic leukemia harboring a t(11;17) chromosomal translocation, we have isolated its murine homologue (mPLZF) and studied its patterns of developmental expression. The levels of mPLZF mRNAs increased perinatally in the liver, heart, and kidney, but with the exception of the heart, they were either absent or very low in the adult tissues. In situ analysis of mPLZF expression in mouse embryos between 7.0 and 10.5 days of development revealed that mPLZF mRNAs and proteins were coexpressed in spatially restricted and temporally dynamic patterns in the central nervous system. In the hindbrain region, a segmental pattern of expression correlated with the development of the rhombomeres. From 9.0 days of development, starting first in rhombomeres 3 and 5, there was an ordered down-regulation of expression in the center of each rhombomere, so that 1 day later elevated levels of mPLZF mRNAs and proteins were restricted to cells surrounding the rhombomeric boundaries. The chicken homologue of the PLZF gene, which we have also cloned, demonstrated a similar segmental pattern of expression in the hindbrain. To date, PLZF represents the only example of a transcription factor with elevated expression at rhombomeric boundaries. The high degree of evolutionary conservation between the patterns of PLZF expression during mammalian and avian central nervous system development suggests that it has an important functional role in the regionalization of the vertebrate hindbrain, potentially regulating boundary cell interactions.

MeSH Terms
Amino Acid Sequence Animals Central Nervous System/embryology,metabolism Chickens Chromosomes, Human, Pair 11 Chromosomes, Human, Pair 17 DNA-Binding Proteins/analysis,biosynthesis,genetics Embryo, Mammalian/metabolism Embryo, Nonmammalian Embryonic and Fetal Development Humans Immunohistochemistry Kruppel-Like Transcription Factors Leukemia, Promyelocytic, Acute/genetics Mice Molecular Sequence Data Myocardium/metabolism Polymerase Chain Reaction Promyelocytic Leukemia Zinc Finger Protein Rhombencephalon/cytology,embryology,metabolism Transcription Factors/analysis,biosynthesis,genetics Translocation, Genetic Zinc Fingers
Chemicals
DNA-Binding Proteins Kruppel-Like Transcription Factors Promyelocytic Leukemia Zinc Finger Protein Transcription Factors Zbtb16 protein, mouse ZBTB16 protein, human
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Cook M
Laboratory of Developmental Neurobiology, Medical Research Council National Institute for Medical Research, London, United Kingdom.
Gould A
Brand N
Davies J
Strutt P
Shaknovich R
Licht J
Waxman S
Chen Z
Gluecksohn-Waelsch S
References (26)
26 references, click to expand
  1. Segmental patterns of neuronal development in the chick hindbrain.
    Nature. 1989 Feb 2;337(6206):424-8 PMID: 2644541
  2. The POZ domain: a conserved protein-protein interaction motif.
    Genes Dev. 1994 Jul 15;8(14):1664-77 PMID: 7958847
  3. Retinoic acid induces embryonal carcinoma cells to differentiate into neurons and glial cells.
    J Cell Biol. 1982 Aug;94(2):253-62 PMID: 7107698
  4. Point mutations define a sequence flanking the AUG initiator codon that modulates translation by eukaryotic ribosomes.
    Cell. 1986 Jan 31;44(2):283-92 PMID: 3943125
  5. Segmentation in the chick embryo hindbrain is defined by cell lineage restrictions.
    Nature. 1990 Mar 29;344(6265):431-5 PMID: 2320110
  6. The cellular basis of segmentation in the developing hindbrain.
    Trends Neurosci. 1990 Aug;13(8):329-35 PMID: 1699318
  7. Zinc finger proteins: what we know and what we would like to know.
    Mech Dev. 1991 Nov;35(3):155-69 PMID: 1768617
  8. Lethal chromosomal deletions in the mouse, a model system for the study of development and regulation of postnatal gene expression.
    Bioessays. 1991 Nov;13(11):557-61 PMID: 1772410
  9. Transcriptional control in hepatocytes of normal and c14CoS albino deletion mice.
    EMBO J. 1992 Jan;11(1):127-33 PMID: 1371247
  10. Deficiency of an enzyme of tyrosine metabolism underlies altered gene expression in newborn liver of lethal albino mice.
    Genes Dev. 1992 Aug;6(8):1430-43 PMID: 1644288
  11. Etiologic factors in congenital displacement of the hip and myelodysplasia.
    Clin Orthop Relat Res. 1992 Aug;(281):75-83 PMID: 1499231
  12. Retinoic acid alters hindbrain Hox code and induces transformation of rhombomeres 2/3 into a 4/5 identity.
    Nature. 1992 Dec 24-31;360(6406):737-41 PMID: 1361214
  13. The zinc finger gene Krox20 regulates HoxB2 (Hox2.8) during hindbrain segmentation.
    Cell. 1993 Jan 29;72(2):183-96 PMID: 8093858
  14. Fusion between a novel Krüppel-like zinc finger gene and the retinoic acid receptor-alpha locus due to a variant t(11;17) translocation associated with acute promyelocytic leukaemia.
    EMBO J. 1993 Mar;12(3):1161-7 PMID: 8384553
  15. Segmental organization of embryonic diencephalon.
    Nature. 1993 Jun 17;363(6430):630-4 PMID: 8510755
  16. Acute promyelocytic leukemia.
    N Engl J Med. 1993 Jul 15;329(3):177-89 PMID: 8515790
  17. Perinatal lethality and defects in hindbrain development in mice homozygous for a targeted mutation of the zinc finger gene Krox20.
    Genes Dev. 1993 Nov;7(11):2071-84 PMID: 8224839
  18. Rescue of mice homozygous for lethal albino deletions: implications for an animal model for the human liver disease tyrosinemia type 1.
    Genes Dev. 1993 Dec;7(12A):2285-97 PMID: 8253377
  19. Disruption of Krox-20 results in alteration of rhombomeres 3 and 5 in the developing hindbrain.
    Cell. 1993 Dec 17;75(6):1199-214 PMID: 7903221
  20. odd-paired: a zinc finger pair-rule protein required for the timely activation of engrailed and wingless in Drosophila embryos.
    Genes Dev. 1994 Jan;8(1):105-17 PMID: 8288124
  21. Expression patterns of homeobox and other putative regulatory genes in the embryonic mouse forebrain suggest a neuromeric organization.
    Trends Neurosci. 1993 Nov;16(11):472-9 PMID: 7507621
  22. Molecular mechanisms of segmental patterning in the vertebrate hindbrain and neural crest.
    Bioessays. 1993 Aug;15(8):499-505 PMID: 7907865
  23. Translocation of the RAR alpha locus to the PML or PLZF gene in acute promyelocytic leukaemia.
    Br J Haematol. 1994 Mar;86(3):451-60 PMID: 8043428
  24. Hox genes in vertebrate development.
    Cell. 1994 Jul 29;78(2):191-201 PMID: 7913880
  25. Krox-20 controls myelination in the peripheral nervous system.
    Nature. 1994 Oct 27;371(6500):796-9 PMID: 7935840
  26. Cloning of murine alpha and beta retinoic acid receptors and a novel receptor gamma predominantly expressed in skin.
    Nature. 1989 Jun 29;339(6227):714-7 PMID: 2544807
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
0027-8424
Published
1995-03-14
Pages
2249-53
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC42461
Subset
IM
Grants
NCI NIH HHS · CA59936-01 · United States
Databases
GENBANK
Z47205, Z47206
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com