Seqanswers Leaderboard Ad

Collapse

Announcement

Collapse
No announcement yet.
X
 
  • Filter
  • Time
  • Show
Clear All
new posts

  • Webinar: Learn how one researcher analyzed piRNAs from 7,000 TCGA samples

    Unique somatic and malignant expression patterns implicate PIWI-interacting RNAs in cancer-type specific biology

    April 20, 2017
    2:00 p.m. CDT

    REGISTER

    Presented by:
    Victor Martinez, Ph.D.
    Biomedical Sciences, British Columbia Cancer Research Centre

    PIWI-interacting RNAs (piRNAs) are small (24-32bp) non-coding RNAs with a key role in epigenetic regulation of gene expression and maintenance of genomic stability in germ cells. Recent evidence suggests they are also expressed and functionally active in somatic tissues. Expression of individual piRNAs has been explored in some cancer types; however, their somatic expression patterns are largely uncharted.

    To investigate piRNA expression in human tissues, we analyzed 6,260 small non-coding RNAs (sncRNAs) sequence samples from 11 different organs available from The Cancer Genome Atlas. To deduce expression of approximately ~32,000 human piRNAs on each sample, we built a custom small-RNA sequence analysis pipeline supported by the Partek® Flow® platform. This strategy allowed us to analyze one of the biggest cohort of sncRNAs available worldwide, in a time- and cost-effective manner.

    We discovered that a small, but significant fraction of the known piRNAs are expressed in somatic tissues, displaying tissue-specific patterns. Moreover, more than 500 piRNAs are expressed in corresponding tumour tissues, largely distinguishing tumour from non-malignant tissues in a cancer-type specific manner. Most expressed piRNAs mapped to known transcripts, contrary to “piRNA clusters” reported in germline cells. We also showed that piRNA expression signatures can delineate clinical features, such as histological subgroups, disease stages, and patient survival.

    Here, we provide evidence of somatic, tissue-specific human piRNA expression. Aberrant expression patterns contribute to cancer subtype-specific biology. We discover piRNA-based signatures that identify aggressive tumors and have prognostic value. The unique expression patterns of piRNAs offer an opportunity to better understand cancer-specific biology as well as develop novel prognostic markers for clinical application.

    About Victor Martinez
    Victor Martinez received his Ph.D. in Biomedical Sciences from the University of Chile, before joining the British Columbia Cancer Research Centre in Vancouver, Canada. He leads several ‘big data’ projects that investigate cancer etiology and tumor biology, with a long-term vision of translating his findings to benefit cancer patients. Dr. Martinez’s publications span multiple disciplines, including cancer biology, genomics, epigenetics, and computational biology. He is internationally recognized for his work on non-coding RNA transcriptome, and has received multiple awards for his contributions to the field of environmental cancer genomics. Currently, he serves on the editorial boards of Scientific Reports and Biomed Research International.

Latest Articles

Collapse

  • seqadmin
    Advancing Precision Medicine for Rare Diseases in Children
    by seqadmin




    Many organizations study rare diseases, but few have a mission as impactful as Rady Children’s Institute for Genomic Medicine (RCIGM). “We are all about changing outcomes for children,” explained Dr. Stephen Kingsmore, President and CEO of the group. The institute’s initial goal was to provide rapid diagnoses for critically ill children and shorten their diagnostic odyssey, a term used to describe the long and arduous process it takes patients to obtain an accurate...
    12-16-2024, 07:57 AM
  • seqadmin
    Recent Advances in Sequencing Technologies
    by seqadmin



    Innovations in next-generation sequencing technologies and techniques are driving more precise and comprehensive exploration of complex biological systems. Current advancements include improved accessibility for long-read sequencing and significant progress in single-cell and 3D genomics. This article explores some of the most impactful developments in the field over the past year.

    Long-Read Sequencing
    Long-read sequencing has seen remarkable advancements,...
    12-02-2024, 01:49 PM

ad_right_rmr

Collapse

News

Collapse

Topics Statistics Last Post
Started by seqadmin, 12-17-2024, 10:28 AM
0 responses
33 views
0 likes
Last Post seqadmin  
Started by seqadmin, 12-13-2024, 08:24 AM
0 responses
49 views
0 likes
Last Post seqadmin  
Started by seqadmin, 12-12-2024, 07:41 AM
0 responses
34 views
0 likes
Last Post seqadmin  
Started by seqadmin, 12-11-2024, 07:45 AM
0 responses
46 views
0 likes
Last Post seqadmin  
Working...
X