Unconfigured Ad

Collapse
X
 
  • Time
  • Show
Clear All
new posts
  • dawe
    Senior Member
    • Apr 2009
    • 258

    #1

    ChIP-seq of possibly high repeated sequences

    Hi all, I have these ChIP-seq samples which may be enriched in high-repeated sequences... As many softwares for ChIP-seq rely on unique matches I wonder which could be a good strategy to analyze such samples....

    Thanks

    d
  • mudshark
    Senior Member
    • Jan 2009
    • 138

    #2
    Originally posted by dawe View Post
    Hi all, I have these ChIP-seq samples which may be enriched in high-repeated sequences... As many softwares for ChIP-seq rely on unique matches I wonder which could be a good strategy to analyze such samples....

    Thanks

    d
    hi d
    if you are not explicitly interested in what binds the repeats, you just eliminate the non-unique sequences (and try to sequence sufficiently deep to get more than just repeptitive sequences).
    if you are interested in targets that bind the repeats you will have problems to convincingly analyze the data (imho)
    m

    Comment

    • dawe
      Senior Member
      • Apr 2009
      • 258

      #3
      Originally posted by mudshark View Post
      if you are interested in targets that bind the repeats you will have problems to convincingly analyze the data (imho)
      m
      That's exactly what I fear!
      Thanks

      d

      Comment

      • What_Da_Seq
        Member
        • Jul 2008
        • 28

        #4
        why don't you treat your sequences as de-novo assembly and try to align them with very very strict alignment parameters. This will hopefully result in many unique contigs that rely on small changes even within repeat regions. Then you just have to find the corresponding unique contigs between treatment and control and calculate the statistical difference.

        Comment

        • dawe
          Senior Member
          • Apr 2009
          • 258

          #5
          Originally posted by What_Da_Seq View Post
          why don't you treat your sequences as de-novo assembly and try to align them with very very strict alignment parameters. This will hopefully result in many unique contigs that rely on small changes even within repeat regions. Then you just have to find the corresponding unique contigs between treatment and control and calculate the statistical difference.
          Mmm... that's an interesting approach... I'll try it for sure. Which assembler would you suggest for this task? I've tried once abyss but it didn't satisfy me. Velvet, maybe?

          d

          Comment

          • Chipper
            Senior Member
            • Mar 2008
            • 323

            #6
            What type of repeats do you expect to be enriched? Do you see any alignments at all in these regions? If your repeats are relatively short and you are planning to do more sequencing one way would be to select larger fragments and do additional shearing before library construction, this would perhaps give more unique alignments around the repeats.

            Comment

            • What_Da_Seq
              Member
              • Jul 2008
              • 28

              #7
              Sorry no experience with de-novo assembly only reference based assembly.

              Comment

              • What_Da_Seq
                Member
                • Jul 2008
                • 28

                #8
                Originally posted by Chipper View Post
                ... do additional shearing before library construction, this would perhaps give more unique alignments around the repeats.
                I do not follow. Don't you want to do LESS shearing to get larger fragments?

                Comment

                • dawe
                  Senior Member
                  • Apr 2009
                  • 258

                  #9
                  Originally posted by Chipper View Post
                  What type of repeats do you expect to be enriched? Do you see any alignments at all in these regions? If your repeats are relatively short and you are planning to do more sequencing one way would be to select larger fragments and do additional shearing before library construction, this would perhaps give more unique alignments around the repeats.
                  The person who gave us the sample claims that there may be enrichment in rDNA sequences (mouse). I've tried to align reads on rDNA sequence only and I get ~0.15 % reads aligned (which seems to me pretty high for a 45kbp sequence) in IP. I've just excluded the matching reads to align them on the rest of the genome (just to see what's happening).
                  I've also noticed that rDNA sequence are not annotated on mouse genome (and they're expected to be ~400 copies scattered around).

                  d

                  Comment

                  Latest Articles

                  Collapse

                  • SEQadmin2
                    Beyond CRISPR/Cas9: Understand, Choose, and Use the Right Genome Editing Tool
                    by SEQadmin2



                    CRISPR/Cas9 sparked the gene editing revolution for both research and therapeutics.1 But this system still showed severe issues that limited its applications. The most prominent were the heavy reliance on PAM sequences, delivery limitations, double-stranded breaks that prompt unintended edits and cell death, and editing inefficiency (both in targeting and in knock-in reliability).

                    Despite this, “CRISPR helped turn genome editing from a specialized technique into
                    ...
                    07-31-2026, 11:01 AM
                  • SEQadmin2
                    Proteomic Platforms: How to Choose the Right Analytical Strategy to Improve Detection and Clinical Applications
                    by SEQadmin2


                    Proteomics platforms are evolving rapidly, with advances in mass spectrometry and affinity-based approaches expanding what researchers can detect and at what scale. As the field moves toward deeper proteome coverage and clinical applications, scientists face an increasingly complex landscape of tools. This article will explore how researchers are navigating these choices to find the right platform for their work.

                    The systematic characterization of the human proteome has
                    ...
                    07-20-2026, 11:48 AM
                  • SEQadmin2
                    Advanced Sequencing Platforms Tackle Neuroscience’s Toughest Genomics Problems
                    by SEQadmin2



                    Genomics studies in neuroscience face a special challenge due to the brain’s complexity and scarcity of samples. Mapping changes in cell type and state using conventional next-generation sequencing methods remains challenging. Advances in technologies like single-cell sequencing, spatial transcriptomics, and long-read sequencing have opened the door to deeper studies of the brain and diseases like Alzheimer’s, amyotrophic lateral sclerosis (ALS), and schizophrenia.
                    ...
                    07-09-2026, 11:10 AM

                  ad_right_rmr

                  Collapse

                  News

                  Collapse

                  Topics Statistics Last Post
                  Started by SEQadmin2, 07-31-2026, 02:55 AM
                  0 responses
                  20 views
                  0 reactions
                  Last Post SEQadmin2  
                  Started by SEQadmin2, 07-24-2026, 12:17 PM
                  0 responses
                  16 views
                  0 reactions
                  Last Post SEQadmin2  
                  Started by SEQadmin2, 07-23-2026, 11:41 AM
                  0 responses
                  16 views
                  0 reactions
                  Last Post SEQadmin2  
                  Started by SEQadmin2, 07-20-2026, 11:10 AM
                  0 responses
                  26 views
                  0 reactions
                  Last Post SEQadmin2  
                  Working...