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Genomics of Preterm Birth

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Specialty General Medicine
Date 2015 Feb 4
PMID 25646385
Citations 11
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Abstract

The molecular mechanisms controlling human birth timing at term, or resulting in preterm birth, have been the focus of considerable investigation, but limited insights have been gained over the past 50 years. In part, these processes have remained elusive because of divergence in reproductive strategies and physiology shown by model organisms, making extrapolation to humans uncertain. Here, we summarize the evolution of progesterone signaling and variation in pregnancy maintenance and termination. We use this comparative physiology to support the hypothesis that selective pressure on genomic loci involved in the timing of parturition have shaped human birth timing, and that these loci can be identified with comparative genomic strategies. Previous limitations imposed by divergence of mechanisms provide an important new opportunity to elucidate fundamental pathways of parturition control through increasing availability of sequenced genomes and associated reproductive physiology characteristics across diverse organisms.

Citing Articles

Variants of the Progesterone Receptor Gene as Modulators of Risk for Idiopathic Spontaneous Premature Birth.

Kadivnik M, Dundovic M, Bartulic A, Rupcic Rubin V, Abicic Zuljevic K, Milic Vranjes I Int J Mol Sci. 2025; 26(4).

PMID: 40004073 PMC: 11855569. DOI: 10.3390/ijms26041606.


Role of , and Gene Variants in Preterm Birth.

Kadivnik M, Plecko D, Kralik K, Arvaj N, Wagner J J Clin Med. 2024; 13(8).

PMID: 38673702 PMC: 11051338. DOI: 10.3390/jcm13082429.


Caspase-3, Caspase-8 and XIAP Gene Expression in the Placenta: Exploring the Causes of Spontaneous Preterm Labour.

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Evolutionary transcriptomics implicates new genes and pathways in human pregnancy and adverse pregnancy outcomes.

Mika K, Marinic M, Singh M, Muter J, Brosens J, Lynch V Elife. 2021; 10.

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Evolutionary transcriptomics implicates in the origins of implantation and regulation of gestation length.

Marinic M, Mika K, Chigurupati S, Lynch V Elife. 2021; 10.

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