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Exploring Sequence Space to Identify Binding Sites for Regulatory RNA-Binding Proteins
Published on: August 9, 2019
Identification of the SRC pyrimidine-binding protein (SPy) as hnRNP K: implications in the regulation of SRC1A
Shawn A Ritchie1, Mohammed K Pasha, Danielle J P Batten
1Department of Biochemistry, College of Medicine, University of Saskatchewan, Saskatoon, Saskatchewan S7N 5E5, Canada.
Abstract:
The human SRC gene encodes pp60(c-src), a non-receptor tyrosine kinase involved in numerous signaling pathways. Activation or overexpression of c-Src has also been linked to a number of important human cancers. Transcription of the SRC gene is complex and regulated by two closely linked but highly dissimilar promoters, each associated with its own distinct non-coding exon. In many tissues SRC expression is regulated by the housekeeping-like SRC1A promoter. In addition to other regulatory elements, three substantial polypurine:polypyrimidine (TC) tracts within this promoter are required for full transcriptional activity. Previously, we described an unusual factor called SRC pyrimidine-binding protein (SPy) that could bind to two of these TC tracts in their double-stranded form, but was also capable of interacting with higher affinity to all three pyrimidine tracts in their single-stranded form. Mutations in the TC tracts, which abolished the ability of SPy to interact with its double-stranded DNA target, significantly reduced SRC1A promoter activity, especially in concert with mutations in critical Sp1 binding sites. Here we expand upon our characterization of this interesting factor and describe the purification of SPy from human SW620 colon cancer cells using a DNA affinity-based approach. Subsequent in-gel tryptic digestion of purified SPy followed by MALDI-TOF mass spectrometric analysis identified SPy as heterogeneous nuclear ribonucleoprotein K (hnRNP K), a known nucleic-acid binding protein implicated in various aspects of gene expression including transcription. These data provide new insights into the double- and single-stranded DNA-binding specificity, as well as functional properties of hnRNP K, and suggest that hnRNP K is a critical component of SRC1A transcriptional processes.
Insights
Heterogeneous nuclear ribonucleoprotein K (hnRNP K) binds to the SRC1A promoter, regulating SRC gene transcription crucial for cancer pathways. This discovery reveals hnRNP K
Area of Science:
- Molecular Biology
- Cancer Biology
- Gene Regulation
Background:
- The SRC gene encodes pp60(c-src), a tyrosine kinase implicated in cancer signaling.
- SRC gene transcription is complex, involving two promoters, including the housekeeping-like SRC1A promoter.
- The SRC1A promoter contains polypurine:polypyrimidine (TC) tracts essential for transcriptional activity.
Purpose of the Study:
- To further characterize the SRC pyrimidine-binding protein (SPy) and identify its molecular identity.
- To investigate the role of SPy in regulating SRC1A promoter activity.
- To elucidate the DNA-binding properties and functional significance of SPy in SRC transcription.
Main Methods:
- Purification of SPy from SW620 colon cancer cells using DNA affinity chromatography.
- In-gel tryptic digestion of purified SPy.
- MALDI-TOF mass spectrometry for protein identification.
Main Results:
- SPy was purified and identified as heterogeneous nuclear ribonucleoprotein K (hnRNP K).
- hnRNP K exhibits distinct binding affinities for double-stranded and single-stranded TC tracts within the SRC1A promoter.
- Mutations in TC tracts affecting SPy binding significantly reduced SRC1A promoter activity.
Conclusions:
- hnRNP K is a critical component of SRC1A transcriptional regulation.
- hnRNP K's DNA-binding specificity and functional role in SRC transcription are newly elucidated.
- These findings offer insights into hnRNP K's broader role in gene expression.
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