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1.
Reprod Biol Endocrinol ; 20(1): 150, 2022 Oct 12.
Article in English | MEDLINE | ID: mdl-36224627

ABSTRACT

BACKGROUND: Peptidylarginine deiminase enzymes (PADs) convert arginine residues to citrulline in a process called citrullination or deimination. Recently, two PADs, PAD2 and PAD4, have been linked to hormone signaling in vitro and the goal of this study was to test for links between PAD2/PAD4 and hormone signaling in vivo. METHODS: Preliminary analysis of Padi2 and Padi4 single knockout (SKO) mice did not find any overt reproductive defects and we predicted that this was likely due to genetic compensation. To test this hypothesis, we created a Padi2/Padi4 double knockout (DKO) mouse model and tested these mice along with wild-type FVB/NJ (WT) and both strains of SKO mice for a range of reproductive defects. RESULTS: Controlled breeding trials found that male DKO mice appeared to take longer to have their first litter than WT controls. This tendency was maintained when these mice were mated to either DKO or WT females. Additionally, unsexed 2-day old DKO pups and male DKO weanlings both weighed significantly less than their WT counterparts, took significantly longer than WT males to reach puberty, and had consistently lower serum testosterone levels. Furthermore, 90-day old adult DKO males had smaller testes than WT males with increased rates of germ cell apoptosis. CONCLUSIONS: The Padi2/Padi4 DKO mouse model provides a new tool for investigating PAD function and outcomes from our studies provide the first in vivo evidence linking PADs with hormone signaling.


Subject(s)
Citrulline , Infertility , Protein-Arginine Deiminase Type 2/metabolism , Protein-Arginine Deiminases/metabolism , Animals , Arginine , Disease Models, Animal , Female , Gonadotropins , Hydrolases/genetics , Infertility/genetics , Male , Mice , Mice, Knockout , Protein-Arginine Deiminase Type 2/genetics , Protein-Arginine Deiminases/genetics , Testosterone
2.
Cell Rep Med ; 5(1): 101373, 2024 01 16.
Article in English | MEDLINE | ID: mdl-38232699

ABSTRACT

Myalgic encephalomyelitis/chronic fatigue syndrome (ME/CFS) is a serious and poorly understood disease. To understand immune dysregulation in ME/CFS, we use single-cell RNA sequencing (scRNA-seq) to examine immune cells in patient and control cohorts. Postexertional malaise (PEM), an exacerbation of symptoms following strenuous exercise, is a characteristic symptom of ME/CFS. To detect changes coincident with PEM, we applied scRNA-seq on the same cohorts following exercise. At baseline, ME/CFS patients display classical monocyte dysregulation suggestive of inappropriate differentiation and migration to tissue. We identify both diseased and more normal monocytes within patients, and the fraction of diseased cells correlates with disease severity. Comparing the transcriptome at baseline and postexercise challenge, we discover patterns indicative of improper platelet activation in patients, with minimal changes elsewhere in the immune system. Taken together, these data identify immunological defects present at baseline in patients and an additional layer of dysregulation in platelets.


Subject(s)
Fatigue Syndrome, Chronic , Humans , Fatigue Syndrome, Chronic/genetics , Fatigue Syndrome, Chronic/diagnosis , Exercise/physiology , Gene Expression Profiling , Transcriptome , Monocytes
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