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Machine learning workflows identify a microRNA signature of insulin transcription in human tissues.


ABSTRACT: Dicer knockout mouse models demonstrated a key role for microRNAs in pancreatic β-cell function. Studies to identify specific microRNA(s) associated with human (pro-)endocrine gene expression are needed. We profiled microRNAs and key pancreatic genes in 353 human tissue samples. Machine learning workflows identified microRNAs associated with (pro-)insulin transcripts in a discovery set of islets (n = 30) and insulin-negative tissues (n = 62). This microRNA signature was validated in remaining 261 tissues that include nine islet samples from individuals with type 2 diabetes. Top eight microRNAs (miR-183-5p, -375-3p, 216b-5p, 183-3p, -7-5p, -217-5p, -7-2-3p, and -429-3p) were confirmed to be associated with and predictive of (pro-)insulin transcript levels. Use of doxycycline-inducible microRNA-overexpressing human pancreatic duct cell lines confirmed the regulatory roles of these microRNAs in (pro-)endocrine gene expression. Knockdown of these microRNAs in human islet cells reduced (pro-)insulin transcript abundance. Our data provide specific microRNAs to further study microRNA-mRNA interactions in regulating insulin transcription.

SUBMITTER: Wong WKM 

PROVIDER: S-EPMC8082091 | biostudies-literature | 2021 Apr

REPOSITORIES: biostudies-literature

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Machine learning workflows identify a microRNA signature of insulin transcription in human tissues.

Wong Wilson K M WKM   Joglekar Mugdha V MV   Saini Vijit V   Jiang Guozhi G   Dong Charlotte X CX   Chaitarvornkit Alissa A   Maciag Grzegorz J GJ   Gerace Dario D   Farr Ryan J RJ   Satoor Sarang N SN   Sahu Subhshri S   Sharangdhar Tejaswini T   Ahmed Asma S AS   Chew Yi Vee YV   Liuwantara David D   Heng Benjamin B   Lim Chai K CK   Hunter Julie J   Januszewski Andrzej S AS   Sørensen Anja E AE   Akil Ammira S A ASA   Gamble Jennifer R JR   Loudovaris Thomas T   Kay Thomas W TW   Thomas Helen E HE   O'Connell Philip J PJ   Guillemin Gilles J GJ   Martin David D   Simpson Ann M AM   Hawthorne Wayne J WJ   Dalgaard Louise T LT   Ma Ronald C W RCW   Hardikar Anandwardhan A AA  

iScience 20210331 4


Dicer knockout mouse models demonstrated a key role for microRNAs in pancreatic β-cell function. Studies to identify specific microRNA(s) associated with human (pro-)endocrine gene expression are needed. We profiled microRNAs and key pancreatic genes in 353 human tissue samples. Machine learning workflows identified microRNAs associated with (pro-)insulin transcripts in a discovery set of islets (n = 30) and insulin-negative tissues (n = 62). This microRNA signature was validated in remaining 26  ...[more]

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