Spatial transcriptome profiling uncovers metabolic regulation of left-right patterning

Author:

Yagi HisatoORCID,Cui Cheng,Saydmohammed Manush,Gabriel George,Baker Candice,Devine William,Wu Yijen,Lin Jiuann-huey,Malek Marcus,Bais Abha,Murray Stephen,Aronow Bruce,Tsang MichaelORCID,Kostka Dennis,Lo Cecilia W.

Abstract

AbstractLeft-right patterning disturbance can cause severe birth defects, but it remains least understood of the three body axes. We uncovered an unexpected role for metabolic regulation in left-right patterning. Analysis of the first spatial transcriptome profile of left-right patterning revealed global activation of glycolysis, accompanied by right-sided expression ofBmp7and genes regulating insulin growth factor signaling. Cardiomyocyte differentiation was left-biased, which may underlie the specification of heart looping orientation. This is consistent with knownBmp7stimulation of glycolysis and glycolysis suppression of cardiomyocyte differentiation. Liver/lung laterality may be specified via similar metabolic regulation of endoderm differentiation.Myo1d, found to be left-sided, was shown to regulate gut looping in mice, zebrafish, and human. Together these findings indicate metabolic regulation of left-right patterning. This could underlie high incidence of heterotaxy-related birth defects in maternal diabetes, and the association of PFKP, allosteric enzyme regulating glycolysis, with heterotaxy. This transcriptome dataset will be invaluable for interrogating birth defects involving laterality disturbance.

Publisher

Cold Spring Harbor Laboratory

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