Literature DB >> 8670866

Temporal reiteration of a precise gene expression pattern during nematode development.

I L Johnstone1, J D Barry.   

Abstract

The nematode Caenorhabditis elegans is contained within a multifunctional exoskeleton, the cuticle, that contains a large number of distinct collagens. As the nematode proceeds from the egg through four larval stages to the adult, transition between larval stages is marked by synthesis of a new cuticle and subsequent moulting of the old one. This is a cyclically repeated developmental event, frequently described as the moulting cycle. We have examined the temporal expression of a group of six genes encoding distinct cuticular collagens. As expected, mRNA abundance for each of the six genes tested is found to oscillate, peaking once during each larval stage. Unexpectedly, the periods of abundance for each gene do not coincide, different genes being expressed at different times relative to one another within the moulting cycle. We detect a programme of temporally distinct waves of collagen gene expression, the precise pattern of which is repeated during each of the four larval stages. This multiphasic pattern of oscillating cuticular collagen gene expression indicates an unexpected complexity of temporal control during the nematode moulting cycle and has implications for collagen trimerization and cuticle synthesis.

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Year:  1996        PMID: 8670866      PMCID: PMC451985     

Source DB:  PubMed          Journal:  EMBO J        ISSN: 0261-4189            Impact factor:   11.598


  26 in total

1.  The sqt-1 gene of C. elegans encodes a collagen critical for organismal morphogenesis.

Authors:  J M Kramer; J J Johnson; R S Edgar; C Basch; S Roberts
Journal:  Cell       Date:  1988-11-18       Impact factor: 41.582

Review 2.  The molecular basis for metameric pattern in the Drosophila embryo.

Authors:  M Akam
Journal:  Development       Date:  1987-09       Impact factor: 6.868

3.  Post-embryonic cell lineages of the nematode, Caenorhabditis elegans.

Authors:  J E Sulston; H R Horvitz
Journal:  Dev Biol       Date:  1977-03       Impact factor: 3.582

4.  The cuticle of Caenorhabditis elegans. II. Stage-specific changes in ultrastructure and protein composition during postembryonic development.

Authors:  G N Cox; S Staprans; R S Edgar
Journal:  Dev Biol       Date:  1981-09       Impact factor: 3.582

5.  Heterochronic mutants of the nematode Caenorhabditis elegans.

Authors:  V Ambros; H R Horvitz
Journal:  Science       Date:  1984-10-26       Impact factor: 47.728

6.  Overlapping stage-specific sets of numerous small collagenous polypeptides are translated in vitro from Caenorhabditis elegans RNA.

Authors:  J C Politz; R S Edgar
Journal:  Cell       Date:  1984-07       Impact factor: 41.582

7.  Biochemical characterization of the cuticle collagen of the nematode Caenorhabditis elegans.

Authors:  R Ouazana; D Herbage
Journal:  Biochim Biophys Acta       Date:  1981-07-28

8.  Isolation and characterization of four developmentally regulated cathepsin B-like cysteine protease genes from the nematode Caenorhabditis elegans.

Authors:  C G Larminie; I L Johnstone
Journal:  DNA Cell Biol       Date:  1996-01       Impact factor: 3.311

9.  Number and organization of collagen genes in Caenorhabditis elegans.

Authors:  G N Cox; J M Kramer; D Hirsh
Journal:  Mol Cell Biol       Date:  1984-11       Impact factor: 4.272

10.  Comparisons of the complete sequences of two collagen genes from Caenorhabditis elegans.

Authors:  J M Kramer; G N Cox; D Hirsh
Journal:  Cell       Date:  1982-09       Impact factor: 41.582

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  57 in total

1.  Two sets of interacting collagens form functionally distinct substructures within a Caenorhabditis elegans extracellular matrix.

Authors:  Laura McMahon; Joaquin M Muriel; Brett Roberts; Martyn Quinn; Iain L Johnstone
Journal:  Mol Biol Cell       Date:  2003-04       Impact factor: 4.138

2.  Extracellular leucine-rich repeat proteins are required to organize the apical extracellular matrix and maintain epithelial junction integrity in C. elegans.

Authors:  Vincent P Mancuso; Jean M Parry; Luke Storer; Corey Poggioli; Ken C Q Nguyen; David H Hall; Meera V Sundaram
Journal:  Development       Date:  2012-01-25       Impact factor: 6.868

3.  Caenorhabditis elegans wsp-1 regulation of synaptic function at the neuromuscular junction.

Authors:  Yuqian Zhang; Terrance J Kubiseski
Journal:  J Biol Chem       Date:  2010-05-25       Impact factor: 5.157

4.  Analysis of smu-1, a gene that regulates the alternative splicing of unc-52 pre-mRNA in Caenorhabditis elegans.

Authors:  C A Spike; J E Shaw; R K Herman
Journal:  Mol Cell Biol       Date:  2001-08       Impact factor: 4.272

Review 5.  Molting in C. elegans.

Authors:  Vladimir Lažetić; David S Fay
Journal:  Worm       Date:  2017-05-17

Review 6.  Towards a physical understanding of developmental patterning.

Authors:  Jose Negrete; Andrew C Oates
Journal:  Nat Rev Genet       Date:  2021-05-10       Impact factor: 53.242

7.  Loss of spr-5 bypasses the requirement for the C.elegans presenilin sel-12 by derepressing hop-1.

Authors:  S Eimer; B Lakowski; R Donhauser; R Baumeister
Journal:  EMBO J       Date:  2002-11-01       Impact factor: 11.598

8.  SMU-2 and SMU-1, Caenorhabditis elegans homologs of mammalian spliceosome-associated proteins RED and fSAP57, work together to affect splice site choice.

Authors:  Angela K Spartz; Robert K Herman; Jocelyn E Shaw
Journal:  Mol Cell Biol       Date:  2004-08       Impact factor: 4.272

9.  Loss of SEC-23 in Caenorhabditis elegans causes defects in oogenesis, morphogenesis, and extracellular matrix secretion.

Authors:  Brett Roberts; Caroline Clucas; Iain L Johnstone
Journal:  Mol Biol Cell       Date:  2003-08-07       Impact factor: 4.138

10.  Natural variation in gene expression in the early development of dauer larvae of Caenorhabditis elegans.

Authors:  Simon C Harvey; Gary L A Barker; Alison Shorto; Mark E Viney
Journal:  BMC Genomics       Date:  2009-07-18       Impact factor: 3.969

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