GASZ self-interaction clusters mitochondria into the intermitochondrial cement for proper germ cell development

Author:

Miao Junru1,Wang Chuanyun2,Chen Wei1,Wang Yongsheng2,Kakasani Shalin1,Wang Yuan2ORCID

Affiliation:

1. Department of Animal Sciences, College of Agriculture and Natural Resources, Michigan State University , East Lansing, MI 48824 , USA

2. Shanghai Key Laboratory of Regulatory Biology, Institute of Biomedical Sciences and School of Life Sciences, East China Normal University , Shanghai, 200241 , China

Abstract

Abstract Mitochondrial features and activities vary in a cell type- and developmental stage-dependent manner to critically impact cell function and lineage development. Particularly in male germ cells, mitochondria are uniquely clustered into intermitochondrial cement (IMC), an electron-dense granule in the cytoplasm to support proper spermatogenesis. But it remains puzzling how mitochondria assemble into such a stable structure as IMC without limiting membrane during development. Here, we showed that GASZ (germ cell-specific, ankyrin repeat, SAM and basic leucine zipper domain containing protein), a mitochondrion-localized germ cell-specific protein, self-interacted with each other to cluster mitochondria and maintain protein stability for IMC assembling. When the self-interaction of GASZ was disrupted by either deleting its critical interaction motif or using a blocking peptide, the IMC structure was destabilized, which in turn led to impaired spermatogenesis. Notably, the blocked spermatogenesis was reversible once GASZ self-interaction was recovered. Our findings thus reveal a critical mechanism by which mitochondrion-based granules are properly assembled to support germ cell development while providing an alternative strategy for developing nonhormonal male contraceptives by targeting IMC protein interactions.

Funder

Michigan State University

USDA

National Institute of Food and Agriculture

National Science Foundation

Publisher

Oxford University Press (OUP)

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