Heterogeneous nature of tissues has proven to be a limiting factor in the amount of information that can be generated from biological samples, compromising downstream analyses. Considering the complex and dynamic cellular associations existing within many tissues, in order to recapitulate the in vivo interactions thorough molecular analysis one must be able to analyze specific cell populations within their native context. Laser-mediated microdissection can achieve this goal, allowing unambiguous identification and successful harvest of cells of interest under direct microscopic visualization while maintaining molecular integrity. We have applied this technology to analyse gene expression within defined areas of the developing Drosophila wing disc, which represents an advantageous model system to study growth control, cell differentiation and organogenesis. Larval imaginal discs are precociously subdivided into anterior and posterior, dorsal and ventral compartments by lineage restriction boundaries. Making use of the inducible GAL4-UAS binary expression system, each of these compartments can be specifically labelled in transgenic flies expressing an UAS-GFP transgene under the control of the appropriate GAL4-driver construct. In the transgenic discs, gene expression profiling of discrete subsets of cells can precisely be determined after laser-mediated microdissection, using the fluorescent GFP signal to guide laser cut. Among the variety of downstream applications, we focused on RNA transcript profiling after localised RNA interference (RNAi). With the advent of RNAi technology, GFP labelling can be coupled with localised knockdown of a given gene, allowing to determinate the transcriptional response of a discrete cell population to the specific gene silencing. To validate this approach, we dissected equivalent areas of the disc from the posterior (labelled by GFP expression), and the anterior (unlabelled) compartment upon regional silencing in the P compartment of an otherwise ubiquitously expressed gene. RNA was extracted from microdissected silenced and unsilenced areas and comparative gene expression profiling determined by quantitative real-time RT-PCR. We show that this method can effectively be applied for accurate transcriptomics of subsets of cells within the Drosophila imaginal discs. Indeed, while massive disc preparation as source of RNA generally assumes cell homogeneity, it is well known that transcriptional expression can vary greatly within these structures in consequence of positional information. Using localized fluorescent GFP signal to guide laser cut, more accurate transcriptional analyses can be performed and profitably applied to disparate applications, including transcript profiling of distinct cell lineages within their native context.

Laser Microdissection Applied to Gene Expression Profiling of Subset of Cells from the Drosophila Wing Disc / Vicidomini, Rosario; Tortoriello, Giuseppe; Furia, Maria; Polese, Gianluca. - In: JOURNAL OF VISUALIZED EXPERIMENTS. - ISSN 1940-087X. - ELETTRONICO. - 38:Journal of Visualized Experiments(2010), pp. 1-2. [10.3791/1895]

Laser Microdissection Applied to Gene Expression Profiling of Subset of Cells from the Drosophila Wing Disc

VICIDOMINI, ROSARIO;TORTORIELLO, GIUSEPPE;FURIA, MARIA;POLESE, GIANLUCA
2010

Abstract

Heterogeneous nature of tissues has proven to be a limiting factor in the amount of information that can be generated from biological samples, compromising downstream analyses. Considering the complex and dynamic cellular associations existing within many tissues, in order to recapitulate the in vivo interactions thorough molecular analysis one must be able to analyze specific cell populations within their native context. Laser-mediated microdissection can achieve this goal, allowing unambiguous identification and successful harvest of cells of interest under direct microscopic visualization while maintaining molecular integrity. We have applied this technology to analyse gene expression within defined areas of the developing Drosophila wing disc, which represents an advantageous model system to study growth control, cell differentiation and organogenesis. Larval imaginal discs are precociously subdivided into anterior and posterior, dorsal and ventral compartments by lineage restriction boundaries. Making use of the inducible GAL4-UAS binary expression system, each of these compartments can be specifically labelled in transgenic flies expressing an UAS-GFP transgene under the control of the appropriate GAL4-driver construct. In the transgenic discs, gene expression profiling of discrete subsets of cells can precisely be determined after laser-mediated microdissection, using the fluorescent GFP signal to guide laser cut. Among the variety of downstream applications, we focused on RNA transcript profiling after localised RNA interference (RNAi). With the advent of RNAi technology, GFP labelling can be coupled with localised knockdown of a given gene, allowing to determinate the transcriptional response of a discrete cell population to the specific gene silencing. To validate this approach, we dissected equivalent areas of the disc from the posterior (labelled by GFP expression), and the anterior (unlabelled) compartment upon regional silencing in the P compartment of an otherwise ubiquitously expressed gene. RNA was extracted from microdissected silenced and unsilenced areas and comparative gene expression profiling determined by quantitative real-time RT-PCR. We show that this method can effectively be applied for accurate transcriptomics of subsets of cells within the Drosophila imaginal discs. Indeed, while massive disc preparation as source of RNA generally assumes cell homogeneity, it is well known that transcriptional expression can vary greatly within these structures in consequence of positional information. Using localized fluorescent GFP signal to guide laser cut, more accurate transcriptional analyses can be performed and profitably applied to disparate applications, including transcript profiling of distinct cell lineages within their native context.
2010
Laser Microdissection Applied to Gene Expression Profiling of Subset of Cells from the Drosophila Wing Disc / Vicidomini, Rosario; Tortoriello, Giuseppe; Furia, Maria; Polese, Gianluca. - In: JOURNAL OF VISUALIZED EXPERIMENTS. - ISSN 1940-087X. - ELETTRONICO. - 38:Journal of Visualized Experiments(2010), pp. 1-2. [10.3791/1895]
File in questo prodotto:
File Dimensione Formato  
Parte 7.mov.zip

accesso aperto

Tipologia: Altro materiale allegato
Licenza: Dominio pubblico
Dimensione 7.11 MB
Formato Unknown
7.11 MB Unknown Visualizza/Apri
Parte 2.mov.zip

accesso aperto

Tipologia: Altro materiale allegato
Licenza: Dominio pubblico
Dimensione 4.6 MB
Formato Unknown
4.6 MB Unknown Visualizza/Apri
Parte 1 .mov.zip

accesso aperto

Tipologia: Altro materiale allegato
Licenza: Dominio pubblico
Dimensione 2.91 MB
Formato Unknown
2.91 MB Unknown Visualizza/Apri
Parte 8.mov.zip

accesso aperto

Tipologia: Altro materiale allegato
Licenza: Dominio pubblico
Dimensione 4.21 MB
Formato Unknown
4.21 MB Unknown Visualizza/Apri
Parte 4.mov.zip

accesso aperto

Tipologia: Altro materiale allegato
Licenza: Dominio pubblico
Dimensione 12.93 MB
Formato Unknown
12.93 MB Unknown Visualizza/Apri
Parte 3.mov.zip

accesso aperto

Tipologia: Altro materiale allegato
Licenza: Dominio pubblico
Dimensione 9.94 MB
Formato Unknown
9.94 MB Unknown Visualizza/Apri
Parte 6.mov.zip

accesso aperto

Tipologia: Altro materiale allegato
Licenza: Dominio pubblico
Dimensione 13.94 MB
Formato Unknown
13.94 MB Unknown Visualizza/Apri
Parte 5.mov.zip

accesso aperto

Tipologia: Altro materiale allegato
Licenza: Dominio pubblico
Dimensione 13.83 MB
Formato Unknown
13.83 MB Unknown Visualizza/Apri

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/412831
Citazioni
  • ???jsp.display-item.citation.pmc??? 5
  • Scopus 10
  • ???jsp.display-item.citation.isi??? ND
social impact