| 1995 |
SNAPC1 (SNAP43) was identified as a subunit of the SNAPc (also called PTF) complex, which is a TBP-TAF complex required for transcription of both RNA polymerase II and III snRNA genes. SNAPc binds specifically to the proximal sequence element (PSE), a non-TATA-box basal promoter element common to both gene types. |
Biochemical purification, TBP-TAF complex characterization, PSE-binding assay, in vitro transcription |
Nature |
High |
7715707
|
| 1996 |
SNAPC1 (SNAP43) is required for both RNA polymerase II and III transcription of snRNA genes in vitro. SNAP43 interacts with SNAP50 by co-immunoprecipitation but does not interact with SNAP45 or TBP. |
Antibody depletion of SNAPc from nuclear extracts, in vitro transcription, co-immunoprecipitation |
The EMBO journal |
High |
9003788
|
| 1996 |
SNAP45 interacts with TBP and is required for both RNA polymerase II and III snRNA gene transcription; this established that SNAPC1 (SNAP43) resides in a complex that also contains TBP-interacting subunit SNAP45. |
Co-immunoprecipitation, electrophoretic mobility shift assay with antibody supershift, in vitro transcription |
Proceedings of the National Academy of Sciences of the United States of America |
Medium |
8633057
|
| 1998 |
Recombinant SNAPc was reconstituted from five subunits (SNAP43, SNAP45, SNAP50, SNAP190, and the newly identified SNAP19), confirming that this defined complex binds specifically to the PSE and directs both RNA polymerase II and III snRNA gene transcription. |
Recombinant protein reconstitution, PSE binding assay, in vitro transcription |
Genes & development |
High |
9732265
|
| 1998 |
The genomic structure of the human PTFgamma/SNAP43 gene was determined: it spans ~29 kb, contains 9 exons and 8 introns, and maps to chromosome 14q22 by FISH. The gene lacks a TATA box but has Sp1, Oct1, NF1, AP1, E2F, and USF binding sites in its promoter, and has a VNTR in its 5'-UTR. |
Genomic cloning, primer extension, fluorescence in situ hybridization (FISH) |
Journal of biochemistry |
Medium |
9644240
|
| 2000 |
A detailed map of subunit-subunit contacts within SNAPc was defined: SNAPC1 (SNAP43) contacts were mapped to specific domains, and complexes retaining only the interaction domains bound specifically to the PSE, establishing the minimal architecture for PSE recognition. |
Co-immunoprecipitation, deletion mapping, PSE binding assay (EMSA) |
The Journal of biological chemistry |
Medium |
11056176
|
| 2002 |
A mini-SNAPc composed of SNAP43, SNAP50, and the N-terminal third of SNAP190 binds cooperatively with TBP to the core U6 promoter. A 50-amino-acid region within SNAP190 is required for cooperative binding with TBP in the context of mini-SNAPc. Derivatives of mini-SNAPc lacking this region are still transcriptionally active. |
Recombinant protein reconstitution, PSE/TATA promoter binding assay, in vitro transcription |
Molecular and cellular biology |
High |
12391172
|
| 2003 |
SNAPC1 (SNAP43) directly interacts with the TBP DNA binding domain, contributing to TBP recruitment to the U6 TATA box. This interaction, along with that of SNAP190, helps assemble a RNA polymerase III-specific preinitiation complex. |
TBP recruitment assay, direct protein-protein interaction assay, reconstituted mini-SNAPc (SNAP43 + SNAP50 + truncated SNAP190) |
The Journal of biological chemistry |
Medium |
12621023
|
| 2004 |
The Drosophila ortholog of SNAPC1 (SNAP43), DmPBP45, shows conformationally distinct DNA cross-linking patterns when bound to U1 versus U6 PSEs — cross-linking strongly for two helical turns downstream of U1 PSE but only half a turn downstream of U6 PSE. This conformational difference is consistent with a model where PBP conformation determines which RNA polymerase is recruited. |
Photo-cross-linking, S2 cell expression, functional PSE-binding assay |
Molecular and cellular biology |
Medium |
14966271
|
| 2006 |
SNAP43 participates in direct DNA contacts during PSE recognition by SNAPc. A partial recombinant SNAPc containing SNAP190 (1-505), SNAP50, SNAP43, and SNAP19 expressed in E. coli binds DNA specifically, recruits TBP to U6 promoter DNA, and supports transcription of human U1 and U6 snRNA genes by RNA polymerases II and III. |
E. coli co-expression system, PSE DNA binding assay, TBP recruitment assay, reconstituted in vitro transcription |
Protein expression and purification |
Medium |
16603380
|
| 2012 |
SNAPC1 occupies not only snRNA gene loci but also a large number of transcriptionally active protein-coding genes genome-wide, mirroring elongating RNA polymerase II across gene bodies and 3' ends. Inhibition of transcriptional elongation causes loss of SNAPC1 from gene 3' ends. Depletion of SNAPC1 diminishes transcriptional responsiveness of many genes to EGF and retinoic acid stimulation, establishing SNAPC1 as a general transcriptional coactivator functioning through elongating RNAPII. |
ChIP-seq with anti-SNAPC1 antibodies, SNAPC1 knockdown (siRNA/shRNA), RT-qPCR/RNA-seq for EGF and RA responsiveness, transcriptional elongation inhibitor treatment |
Molecular and cellular biology |
High |
22966203
|
| 2022 |
Cryo-EM structure of human mini-SNAPc (SNAP190 N-terminal domain, SNAP50, SNAP43) in complex with the human U6-1 PSE was determined at 3.49 Å resolution. The structure reveals how the three subunits assemble into a stable mini-SNAPc in a 'wrap-around' mode on the PSE, with three important motifs of SNAP50 mediating both major groove and minor groove recognition of PSE in coordination with the Myb domain of SNAP190. |
Cryo-electron microscopy structure determination, structural analysis |
Nature communications |
High |
36369505
|
| 2025 |
SNAPC1 is SUMOylated at lysine residues K245 and K333. A SUMOylation-deficient SNAPC1 mutant (2KR) is unable to sustain basal levels of snRNA transcription. While SNAPC1 2KR can still interact with SNAPC3 and is recruited to the PSE, its interaction with SNAPC4 is impaired, indicating that SUMOylation of SNAPC1 is required for proper SNAPc complex assembly and snRNA transcription. |
CRISPR/dCas9-SENP1 targeted deSUMOylation, site-directed mutagenesis (K245R/K333R), inducible degron depletion system, co-immunoprecipitation (endogenous-tagged SNAPC3 and SNAPC4), ChIP for PSE recruitment, snRNA expression assay |
Proceedings of the National Academy of Sciences of the United States of America |
High |
40956881
|