4.7 Article

D-Aspartate Depletion Perturbs Steroidogenesis and Spermatogenesis in Mice

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BIOMOLECULES
卷 13, 期 4, 页码 -

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MDPI
DOI: 10.3390/biom13040621

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steroidogenesis; spermatogenesis; D-aspartate oxidase; D-aspartate; DAAM1; PREP; knockin mice

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The depletion of D-aspartate (D-Asp) levels in the testes of knockin mice with the Ddo gene leads to a reduction in testosterone levels and the enzyme involved in testosterone biosynthesis. This deficiency also affects spermatogenesis and leads to increased apoptosis. Additionally, abnormal levels of proteins involved in cytoskeletal organization suggest an overall disorganization of the cytoskeleton due to the lack of D-Asp.
High levels of free D-aspartate (D-Asp) are present in vertebrate testis during post-natal development, coinciding with the onset of testosterone production, which suggests that this atypical amino acid might participate in the regulation of hormone biosynthesis. To elucidate the unknown role of D-Asp on testicular function, we investigated steroidogenesis and spermatogenesis in a one-month-old knockin mouse model with the constitutive depletion of D-Asp levels due to the targeted overexpression of D-aspartate oxidase (DDO), which catalyzes the deaminative oxidation of D-Asp to generate the corresponding alpha-keto acid, oxaloacetate, hydrogen peroxide, and ammonium ions. In the Ddo knockin mice, we found a dramatic reduction in testicular D-Asp levels, accompanied by a significant decrease in the serum testosterone levels and testicular 17 beta-HSD, the enzyme involved in testosterone biosynthesis. Additionally, in the testes of these Ddo knockin mice, the expression of PCNA and SYCP3 proteins decreased, suggesting alterations in spermatogenesis-related processes, as well as an increase in the cytosolic cytochrome c protein levels and TUNEL-positive cell number, which indicate an increase in apoptosis. To further investigate the histological and morphometric testicular alterations in Ddo knockin mice, we analyzed the expression and localization of prolyl endopeptidase (PREP) and disheveled-associated activator of morphogenesis 1 (DAAM1), two proteins involved in cytoskeletal organization. Our results showed that the testicular levels of DAAM1 and PREP in Ddo knockin mice were different from those in wild-type animals, suggesting that the deficiency of D-Asp is associated with overall cytoskeletal disorganization. Our findings confirmed that physiological D-Asp influences testosterone biosynthesis and plays a crucial role in germ cell proliferation and differentiation, which are required for successful reproduction.

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