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hnRNP-C1/C2 Antibody- Mouse Anti-hnRNP-C1/C2
The hnRNPs are RNA binding proteins and they complex with heterogeneous nuclear RNA (hnRNA) These proteins are associated with pre-mRNAs in the nucleus and appear to influence pre-mRNA processing and other aspects of mRNA metabolism and transport While all of the hnRNPs are present in the nucleus some seem to shuttle between the nucleus and the cytoplasm The hnRNP proteins have distinct nucleic acid binding properties hnRNP C1 and C2 are encoded by one gene the two alternatively spliced transcript variants have been described
£226.00

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hnRNP-C1/C2 Antibody- Mouse Anti-hnRNP-C1/C2
The hnRNPs are RNA binding proteins and they complex with heterogeneous nuclear RNA (hnRNA) These proteins are associated with pre-mRNAs in the nucleus and appear to influence pre-mRNA processing and other aspects of mRNA metabolism and transport While all of the hnRNPs are present in the nucleus some seem to shuttle between the nucleus and the cytoplasm The hnRNP proteins have distinct nucleic acid binding properties hnRNP C1 and C2 are encoded by one gene the two alternatively spliced transcript variants have been described
£183.00

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hnRNP-K/J Antibody- Mouse (monoclonal) Anti-hnRNP-K/J
Particulate complex of heterogeneous nuclear RNA (hnRNA) is a heterogeneous mixture of RNA molecules of high Mr with a rapid turnover rate that occurs in cell nuclei during protein synthesis with proteins which are cell specific and heterogeneous The protein component may play a role in the processing of the hnRNA to mRNA
£226.00

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hnRNP-K/J Antibody- Mouse Anti-hnRNP-K/J
Particulate complex of heterogeneous nuclear RNA (hnRNA) is a heterogeneous mixture of RNA molecules of high Mr with a rapid turnover rate that occurs in cell nuclei during protein synthesis with proteins which are cell specific and heterogeneous The protein component may play a role in the processing of the hnRNA to mRNA
£183.00

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Lamin B2 Antibody- Mouse Anti-Lamin B2
An important part of the cell nucleus is formed by nuclear lamina Nuclear lamins form a network of filaments at the nucleoplasmic site of the nuclear membrane Two main subtypes of nuclear lamins can be distinguished ie A-type lamins and B-type lamins The A-type lamins comprise a set of three proteins arising from the same gene by alternative splicing ie lamin A lamin C and lamin Adel10 while the B-type lamins include two proteins arising from two distinct genes ie lamin B1 and lamin B2 The nuclear lamins comprise a unique subclass of the intermediate filament protein family They share a molecular domain organisation with the other intermediate filament proteins in that they are fibrous molecules that have an aminoterminal globular head a central rod of a-helices and a carboxyterminal globular domain Many biochemical and molecular features of lamins have been studied but their functions remain still largely undetermined One of the functions ascribed to the lamina is the maintenance of the structural integrity of the nucleus Besides interactions with the nuclear membrane and other intermediate filaments lamins interact with the nuclear chromatin Eukaryotic chromatin is organised into loops which are attached to the nuclear matrix This organisation is thought to contribute to compaction of the chromatin and regulation of gene expression Lamins as part of the nuclear matrix may be involved in these processes since chromatin binding sites have been detected in both A- and B-type lamins
£183.00

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RNA polymerase II CTD Antibody- Mouse Anti-RNA polymerase II CTD
RNA polymerase II carboxy-terminal domain (CTD) interacts with a large multisubunit complex that contains TATA-binding protein (TBP) and is an integral part of the transcription initiation complex Phosphorylation of RNA polymerase IIs largest subunit C-terminal domain (CTD) is a key event during mRNA metabolism Numerous enzymes including cell cycle-dependent kinases and TFIIF-dependent phosphatases target the CTD
£183.00

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