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high density maxtract phase lock gel tubes  (Qiagen)


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    Structured Review

    Qiagen high density maxtract phase lock gel tubes
    High Density Maxtract Phase Lock Gel Tubes, supplied by Qiagen, used in various techniques. Bioz Stars score: 94/100, based on 34 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/maxtract+high+density+phase+lock+gel+tubes/MaXtract+High+Density/pmc12906170-376-6-12
    Average 94 stars, based on 34 article reviews
    high density maxtract phase lock gel tubes - by Bioz Stars, 2026-10
    94/100 stars

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    Related Articles

    Nucleic Acid Purification:

    Article Title: HELLS regulates transcription in T-cell lymphomas by reducing unscheduled R-loops and by facilitating RNAPII progression
    Article Snippet: .. The eluted samples were then subjected to nucleic acid purification using phenol/chloroform in MaXtract High-Density phase lock gel tubes (Qiagen). .. The immunoprecipitated nucleic acid and input DNA were analyzed by qPCR using SsoFastTM EvaGreen® Supermix (Biorad) with a CFX-Connect Real-Time PCR machine (Biorad).

    Article Title: HELLS regulates transcription in T-cell lymphomas by reducing unscheduled R-loops and by facilitating RNAPII progression.
    Article Snippet: .. The eluted samples were then subjected to nucleic acid purification using phenol / chloroform in MaXtract High-Density phase lock gel tubes (Qiagen). .. The immunoprecipitated nucleic acid and input DNA were analyzed by qPCR using SsoFastTM EvaGreen® Supermix (Biorad) with a CFX-Connect Real-Time PCR machine (Biorad).

    other:

    Article Title: Nuclear speckles enable processing of RNA from GC-rich isochores.
    Article Snippet: REAGENT or RESOURCE SOURCE IDENTIFIER Antibodies Rabbit polyclonal anti-SRRM2 Thermo Fisher Scientific Cat# PA5-66827; RRID: AB_2665182 Rabbit polyclonal anti-SON Sigma-Aldrich Cat# HPA023535; RRID: AB_1857362 Mouse monoclonal anti-SON Santa Cruz Cat# sc-398508; RRID: AB_2868584 Mouse monoclonal anti-PRP8 Santa Cruz Cat# sc-55533; RRID: AB_831685 Rabbit polyclonal anti-SRRM1 abcam Cat# ab221061; RRID:AB_2683778 Mouse monoclonal anti-1H4 (p-SR) Sigma-Aldrich Cat# MABE50; RRID: AB_10807429 Mouse monoclonal anti-pSR Santa Cruz Cat# sc-13509; RRID: AB_2185202 Rabbit polyclonal anti-SF3B1 Bethyl Cat# A300-996A; RRID: AB_805834 Rabbit monoclonal anti-Phospho-SF3B1 (Thr313) Cell Signaling Cat# 25009; RRID: AB_2798893 Mouse monoclonal anti-SF3A2 Santa Cruz Cat# sc-130563; RRID: AB_2186367 Mouse monoclonal anti-U1-70K SySy Cat# 203011; RRID: AB_887903 Mouse monoclonal anti-U2AF2 (U2AF65) Santa Cruz Cat# sc-53942; RRID: AB_831787 Rabbit monoclonal anti-RNAPII NTD Cell Signaling Cat# 14958; RRID: AB_2687876 Mouse monoclonal anti-alpha-tubulin Santa Cruz Cat# sc-32293; RRID: AB_628412 Rabbit polyclonal anti-NOLC1 Sigma-Aldrich Cat# HPA050388; RRID: AB_2681109 Rabbit polyclonal anti-H3K9me3 abcam Cat# ab8898; RRID: AB_306848 Rabbit polyclonal anti-lamin B1 abcam Cat# ab16048; RRID: AB_443298 Bacterial and virus strains Stellar Competent Cells Takara Cat# 636763 Biological samples 10% fly extract Asifa Akhtar lab N/A Chemicals, peptides, and recombinant proteins HaloTag TMR ligand Promega Cat# G8252 SNAP-Cell TMR-Star NEB Cat# S9105S dTag Tocris Cat# 6605 HaloPROTAC3 MedChemExpress; Promega Cat#HY-111997; Cat# GA3110 ent-HaloPROTAC3 Promega Cat# GA4110 Halo-Trap resin ChromoTek Cat# otma bFGF Nacalai Biotech Cat# 19155-07 Sodium pyruvate Nacalai Biotech Cat# 09859-65 Gentamicin Thermo Fisher Scientific Cat# 15750060 Antibiotic-Antimycotic Mixed Stock Solution(100x) Nacalai Biotech Cat# 02892-54 mTeSR Stem Cell Technologies Cat# 100-1215 Leibovitz’s L-15 medium Thermo Fisher Scientific Cat# 11415064 M3 medium Sigma-Aldrich Cat# S3652 Insulin Capricorn Scientific Cat# INS-K cOmplete EDTA-free protease inhibitors cocktail Roche Cat# 05056489001 PhosSTOP Roche Cat# 04906845001 Benzonase HC Millipore Cat# 71205 SMGi-11j MedChemExpress Cat# HY-124719 (Continued on next page) ll OPEN ACCESS Cell 189, 1–16.e1–e13, April 2, 2026 e1 Please cite this article in press as: Małszycki et al., Nuclear speckles enable processing of RNA from GC-rich isochores, Cell (2026), https:// doi.org/10.1016/j.cell.2026.01.011 Article

    Membrane:

    Article Title: Using TT chem -seq for profiling nascent transcription and measuring transcript elongation.
    Article Snippet: The dynamics of transcription can be studied genome wide by high-throughput sequencing of nascent and newly synthesized RNA.. 4-thiouridine (4SU) labeling in vivo enables the specific capture of such new transcripts, with 4SU residues being tagged by biotin linkers and captured using streptavidin beads before library production and highthroughput sequencing.. To achieve high-resolution profiles of transcribed regions, an RNA fragmentation step before biotin tagging was introduced, in an approach known as transient transcriptome sequencing (TT-seq).

    Magnetic Cell Separation:

    Article Title: Using TT chem -seq for profiling nascent transcription and measuring transcript elongation.
    Article Snippet: The dynamics of transcription can be studied genome wide by high-throughput sequencing of nascent and newly synthesized RNA.. 4-thiouridine (4SU) labeling in vivo enables the specific capture of such new transcripts, with 4SU residues being tagged by biotin linkers and captured using streptavidin beads before library production and highthroughput sequencing.. To achieve high-resolution profiles of transcribed regions, an RNA fragmentation step before biotin tagging was introduced, in an approach known as transient transcriptome sequencing (TT-seq).

    Dot Blot:

    Article Title: Using TT chem -seq for profiling nascent transcription and measuring transcript elongation.
    Article Snippet: The dynamics of transcription can be studied genome wide by high-throughput sequencing of nascent and newly synthesized RNA.. 4-thiouridine (4SU) labeling in vivo enables the specific capture of such new transcripts, with 4SU residues being tagged by biotin linkers and captured using streptavidin beads before library production and highthroughput sequencing.. To achieve high-resolution profiles of transcribed regions, an RNA fragmentation step before biotin tagging was introduced, in an approach known as transient transcriptome sequencing (TT-seq).

    Electrophoresis:

    Article Title: Using TT chem -seq for profiling nascent transcription and measuring transcript elongation.
    Article Snippet: The dynamics of transcription can be studied genome wide by high-throughput sequencing of nascent and newly synthesized RNA.. 4-thiouridine (4SU) labeling in vivo enables the specific capture of such new transcripts, with 4SU residues being tagged by biotin linkers and captured using streptavidin beads before library production and highthroughput sequencing.. To achieve high-resolution profiles of transcribed regions, an RNA fragmentation step before biotin tagging was introduced, in an approach known as transient transcriptome sequencing (TT-seq).

    Polymerase Chain Reaction:

    Article Title: Using TT chem -seq for profiling nascent transcription and measuring transcript elongation.
    Article Snippet: The dynamics of transcription can be studied genome wide by high-throughput sequencing of nascent and newly synthesized RNA.. 4-thiouridine (4SU) labeling in vivo enables the specific capture of such new transcripts, with 4SU residues being tagged by biotin linkers and captured using streptavidin beads before library production and highthroughput sequencing.. To achieve high-resolution profiles of transcribed regions, an RNA fragmentation step before biotin tagging was introduced, in an approach known as transient transcriptome sequencing (TT-seq).

    Next-Generation Sequencing:

    Article Title: Using TT chem -seq for profiling nascent transcription and measuring transcript elongation.
    Article Snippet: The dynamics of transcription can be studied genome wide by high-throughput sequencing of nascent and newly synthesized RNA.. 4-thiouridine (4SU) labeling in vivo enables the specific capture of such new transcripts, with 4SU residues being tagged by biotin linkers and captured using streptavidin beads before library production and highthroughput sequencing.. To achieve high-resolution profiles of transcribed regions, an RNA fragmentation step before biotin tagging was introduced, in an approach known as transient transcriptome sequencing (TT-seq).



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