EMBRYONIC INDUCTION OF MESODERM AND NEURAL TISSUE
EMBRYONIC INDUCTION OF MESODERM AND NEURAL TISSUE
批准号:
3303875
负责人:
DOUGLAS A MELTON
金额:
$20.38万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
1990
资助国家:
美国
项目状态:
已结题
起止时间:
1990-07-01 至 1995-06-30
关键词:
Xenopus cell cell interaction complementary DNA developmental genetics early embryonic stage gene expression genetic regulation high performance liquid chromatography histogenesis in situ hybridization laboratory mouse laboratory rabbit mammalian embryology mesoderm messenger RNA molecular cloning neural crest neural plate /tube nucleic acid probes polymerase chain reaction protein purification protein structure function tissue /cell culture transforming growth factors
中文摘要
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英文摘要
The long term objective of the work proposed here is to understand the
factors that specify cell fates, both differentiation and patterning, in
early vertebrate development. Special attention is given to the induction
of neural tissue.
Recently, it has been shown that peptide growth factors act as morphogens
or determinants in that they change the fates of cells from ectodermal to
mesodermal pathways during early Xenopus development. Two embryonic
peptide growth factors, fibroblast growth factor and the Vgl protein, are
involved in mesoderm induction. It is also known that at least one other
factor is needed to account for all the mesodermal cell types that are
formed. This other factor is likely to be a member of he transforming
growth factor beta family and may be the inducing factor secreted from XTC
cells, XTC-MIF. We have now cloned several new members of the TGFbeta gene
family, in Xenopus, one of which may be the XTC-MIF gene. We propose to
study the expression these new TGFbeta genes in early development and
determine their roles in mesodermal and/or neural induction.
A second major aspect of the proposal stems from our discovery of a neural
inducing factor. This factor, secreted from a murine macrophage cell line,
induces neural tissue in isolated Xenopus ectodermal cells that would
otherwise form only ciliated epidermis. Animal caps treated with PIF
organize the induced dorsal CNS and mesodermal tissues into a clear axis
with antero-posterior polarity. Taken together, these findings suggest
that PIF has many of the properties associated with a Spemann organizer.
We propose to purify the PIF protein, clone the gene encoding its Xenopus
homologue and study the function and expression of this novel neural
inducing factor.
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海外基金