Literature DB >> 12557218

Identification of genes expressed during Xenopus laevis limb regeneration by using subtractive hybridization.

Michael W King1, Trent Nguyen, John Calley, Mark W Harty, Michael C Muzinich, Anthony L Mescher, Chris Chalfant, Mathias N'Cho, Kevin McLeaster, Jacquelyn McEntire, David Stocum, Rosamund C Smith, Anton W Neff.   

Abstract

Suppression polymerase chain reaction-based subtractive hybridization was used to identify genes that are expressed during Xenopus laevis hindlimb regeneration. Subtractions were done by using RNAs extracted from the regeneration-competent stage (stage 53) and regeneration-incompetent stage (stage 59) of limb development. Forward and reverse subtractions were done between stage 53 7-day blastema and stage 53 contralateral limb (competent stage), stage 59 7-day pseudoblastema and stage 59 contralateral limb (incompetent stage), and stage 53 7-day blastema and stage 59 7-day pseudoblastema. Several thousand clones were analyzed from the various subtracted libraries, either by random selection and sequencing (1,920) or by screening subtracted cDNA clones (6,150), arrayed on nylon membranes, with tissue-specific probes. Several hundred clones were identified from the array screens whose expression levels were at least twofold higher in experimental tissue vs. control tissue (e.g., blastema vs. limb) and selected for sequencing. In addition, primers were designed to assay several of the randomly selected clones and used to assess the level of expression of these genes during regeneration and normal limb development. Approximately half of the selected clones were differentially expressed, as expected, including several that demonstrate blastema-specific enhancement of expression. Three distinct categories of expression were identified in our screens: (1) clones that are expressed in both regeneration-competent blastemas and -incompetent pseudoblastemas, (2) clones that are expressed at highest levels in regeneration-competent blastemas, and (3) clones that are expressed at highest levels in regeneration-incompetent pseudoblastemas. Characterizing the role of each of these three categories of genes will be important in furthering our understanding of the process of tissue regeneration. Copyright 2003 Wiley-Liss, Inc.

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Year:  2003        PMID: 12557218     DOI: 10.1002/dvdy.10250

Source DB:  PubMed          Journal:  Dev Dyn        ISSN: 1058-8388            Impact factor:   3.780


  10 in total

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Journal:  Regeneration (Oxf)       Date:  2017-12-26

2.  Subtractive screen of potential limb regeneration related genes from Pachytriton brevipes.

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3.  Identification of differentially expressed genes in 4-day axolotl limb blastema by suppression subtractive hybridization.

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4.  Gene expression profiles of lens regeneration and development in Xenopus laevis.

Authors:  Erica L Malloch; Kimberly J Perry; Lisa Fukui; Verity R Johnson; Jason Wever; Caroline W Beck; Michael W King; Jonathan J Henry
Journal:  Dev Dyn       Date:  2009-09       Impact factor: 3.780

5.  Network based transcription factor analysis of regenerating axolotl limbs.

Authors:  Deepali Jhamb; Nandini Rao; Derek J Milner; Fengyu Song; Jo Ann Cameron; David L Stocum; Mathew J Palakal
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6.  Proteomic analysis of fibroblastema formation in regenerating hind limbs of Xenopus laevis froglets and comparison to axolotl.

Authors:  Nandini Rao; Fengyu Song; Deepali Jhamb; Mu Wang; Derek J Milner; Nathaniel M Price; Teri L Belecky-Adams; Mathew J Palakal; Jo Ann Cameron; Bingbing Li; Xiaoping Chen; David L Stocum
Journal:  BMC Dev Biol       Date:  2014-07-25       Impact factor: 1.978

7.  Unique gene expression profile of the proliferating Xenopus tadpole tail blastema cells deciphered by RNA-sequencing analysis.

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8.  Proteomic analysis of blastema formation in regenerating axolotl limbs.

Authors:  Nandini Rao; Deepali Jhamb; Derek J Milner; Bingbing Li; Fengyu Song; Mu Wang; S Randal Voss; Mathew Palakal; Michael W King; Behnaz Saranjami; Holly L D Nye; Jo Ann Cameron; David L Stocum
Journal:  BMC Biol       Date:  2009-11-30       Impact factor: 7.431

9.  Identification of genes associated with regenerative success of Xenopus laevis hindlimbs.

Authors:  Esther J Pearl; Donna Barker; Robert C Day; Caroline W Beck
Journal:  BMC Dev Biol       Date:  2008-06-23       Impact factor: 1.978

10.  Changes in the inflammatory response to injury and its resolution during the loss of regenerative capacity in developing Xenopus limbs.

Authors:  Anthony L Mescher; Anton W Neff; Michael W King
Journal:  PLoS One       Date:  2013-11-20       Impact factor: 3.240

  10 in total

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