Related Experiment Video
Updated: Aug 12, 2026

Genome-wide Protein-protein Interaction Screening by Protein-fragment Complementation Assay (PCA) in Living Cells
Published on: March 3, 2015
A set of proteins interacting with transcription factor Sp1 identified in a two-hybrid screening
M Gunther1, M Laithier, O Brison
1Laboratoire de Génétique Oncologique, UMR 1599 CNRS, Institut Gustave Roussy, France.
Abstract:
The two-hybrid system was used to isolate cDNA clones encoding polypeptides that interact with the N-terminal region (activation domains A, B and C) of the Sp1 transcription factor. Among the 65 collected clones, 43 contained cDNA fragments with open reading frames. They corresponded to 13 genes encoding proteins of known function and to 15 genes, the proteins of which have no known function. Six overlapping cDNA clones corresponded to the Hsc70 protein. Host cell factor (HCF-1) and the KIAA0461 gene (encoding a putative Zn-finger protein of unknown function) were both identified through the isolation of three overlapping cDNA clones. Two cDNA fragments encoding the same region of the SREBP-2 transcription factor were independently selected and two overlapping cDNA clones corresponded to the splicing factor SF3A120. Two different cDNA clones encoded the N- and C-terminal region of the Oct-1 transcription factor. Transcription factors Elf-1 and TIEG, as well as HSph2, the putative human homologue of a murine polyhomeotic gene, were each represented by a single clone. Noticeably, for the four identified transcription factors, the DNA-binding domain was excluded from the selected polypeptides. In vitro binding of the selected polypeptides to the Sp1 protein was demonstrated for the four transcription factors and for the SF3A120, Hsc70, HCF-1, HSph2 and pKIAA0461(245) proteins. Four other cDNA clones encoding polypeptides of unknown function were tested in the in vitro binding assay. All four polypeptides were found to interact with Sp1 in this assay.
Insights
This study identified novel proteins interacting with the Sp1 transcription factor using a two-hybrid system. Several known and unknown proteins, including Hsc70 and HCF-1, were found to bind Sp1, expanding our understanding of Sp1 regulation.
Area of Science:
- Molecular Biology
- Genetics
- Biochemistry
Background:
- The Sp1 transcription factor plays a crucial role in gene regulation.
- Understanding Sp1's interactions is key to deciphering its regulatory mechanisms.
Purpose of the Study:
- To identify novel protein interactors of the Sp1 transcription factor's N-terminal region.
- To characterize the functional interactions between Sp1 and identified proteins.
Main Methods:
- Yeast two-hybrid system screening to identify interacting cDNA clones.
- In vitro binding assays to confirm protein-protein interactions.
- Analysis of identified cDNA clones for known and unknown protein functions.
Main Results:
- Isolated 65 cDNA clones, with 43 containing open reading frames, representing 13 known and 15 unknown protein functions.
- Identified interactions with Hsc70, Host cell factor (HCF-1), SREBP-2, SF3A120, Oct-1, Elf-1, TIEG, and HSph2.
- Confirmed in vitro binding for several identified proteins, including those with unknown functions, to Sp1.
Conclusions:
- The N-terminal region of Sp1 interacts with a diverse set of proteins, including transcription factors, chaperones, and splicing factors.
- Several novel protein interactions with Sp1 were discovered and validated.
- These findings provide new insights into the regulatory network of the Sp1 transcription factor.
Related Concept Videos
Transcription Factors
Transcription Factors
RNA Polymerase II Accessory Proteins
Cooperative Binding of Transcription Regulators
General Transcription Factors
Cooperative Binding of Transcription Regulators

