In situ hybridization studies suggest a role for the basic region‐leucine zipper protein hXBP‐1 in exocrine gland and skeletal development during mouse embryogenesis
Open Access
- 1 June 1993
- journal article
- research article
- Published by Wiley in Developmental Dynamics
- Vol. 197 (2), 146-156
- https://doi.org/10.1002/aja.1001970207
Abstract
The spatial and temporal distribution of transcripts for the TRE/CRE‐binding basic region‐leucine zipper protein hXBP‐1 was determined by in situ hybridization. Analysis of embryos from day 10.5 to 18.5 pc revealed high level expression of hXBP‐1 RNA in two developing organ systems: (1) in bone and cartilage cells of the developing skeleton and toothbuds, and (2) in exocrine glands including the pancreas and the submandibular and salivary glands. High level expression was also found in whisker follicles and in selected cells in brown adipose tissue. In the developing skeleton, hXBP‐1 RNA was expressed starting on day 11.5 pc in osteoblasts of newly formed intramembranous bone. Thereafter, hXBP‐1 was expressed in both osteoblasts and preosteoblasts in bone formed directly by intramembranous formation as well as in bone formed during endochondral ossification. The most intese signal was observed in preosteoblasts and osteoblasts of newly forming bone. At day 11.5 pc low level hXBP‐1 expression was also observed in matrix secreting chondroblasts of bones which are formed initially of cartilage, at the stage where they consist entirely of cartilage, at the stage where they consist entirely of cartilage. Signal was also present in matrix producing chondroblasts of the mature zone of the growth region during endochondral ossification although at significantly lower level than in osteoblasts. hXBP‐1 is thus the first transcription factor described, to our knowledge, whose level of expression is modulated during the osteoblast developmental sequence in vivo. The pattern of expression of hXBP‐1 in the developing skeleton was found to be very similar to that of the genes encoding the tissue inhibitor of metalloproteinase and alkaline phosphatase throughout development. These observations suggest that hXBP‐1 may play a role in regulating the expression of tissue specific genes (TIMP, osteonectin, osteopontin, osteocalcin) expressed in osteoblasts. It is intriguing that the promoter regions of several such genes contain potential hXBP‐1 binding sites.Keywords
This publication has 45 references indexed in Scilit:
- The role of Jun, Fos and the AP-1 complex in cell-proliferation and transformationBiochimica et Biophysica Acta (BBA) - Reviews on Cancer, 1991
- Expression and ultrastructural immunolocalization of a major 66 kDa phosphoprotein synthesized by chicken osteoblasts during mineralization in vitroThe Anatomical Record, 1990
- Developmental expression of the endogenous TIMP gene and a TIMP-lacZ fusion gene in transgenic mice.Genes & Development, 1990
- Identification and characterization of the major chicken bone phosphoproteinEuropean Journal of Biochemistry, 1990
- Branching morphogenesis in the embryonic mouse submandibular gland: A scanning electron microscopic study.Archives of Histology and Cytology, 1990
- Localization of the expression of types I, III, and IV collagen, TGF-β1 and c-fos genes in developing human calvarial bonesDevelopmental Biology, 1988
- EXPRESSION OF THE c‐fos PROTO‐ONCOGENE IN BONE, CARTILAGE AND TOOTH FORMING TISSUES DURING MOUSE DEVELOPMENTBiology of the Cell, 1988
- Expression of differentiated function by mineralizing cultures of chicken osteoblastsDevelopmental Biology, 1987
- Phorbol ester-inducible genes contain a common cis element recognized by a TPA-modulated trans-acting factorCell, 1987
- Cytodifferentiation of secretory cells in the sublingual gland of the prenatal rat: A histological, histochemical and ultrastructura studyJournal of Anatomy, 1978