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Two isoforms of the essential C. elegans Argonaute CSR-1 differentially regulate sperm and oocyte fertility

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TLDR
In this article, the authors used CRISPR-Cas9 genome editing to introduce GFP::3xFLAG into the long and short (CSR-1a) isoforms of the Caenorhabditis elegans genome and found that CSR1a is expressed during spermatogenesis and in several somatic tissues, including the intestine.
Abstract
The Caenorhabditis elegans genome encodes nineteen functional Argonaute proteins that use 22G-RNAs, 26G-RNAs, miRNAs or piRNAs to regulate target transcripts. Only one Argonaute is essential under normal laboratory conditions: CSR-1. While CSR-1 has been studied widely, nearly all studies have overlooked the fact that the csr-1 locus encodes two isoforms. These isoforms differ by an additional 163 amino acids present in the N-terminus of CSR-1a. Using CRISPR-Cas9 genome editing to introduce GFP::3xFLAG into the long (CSR-1a) and short (CSR-1b) isoforms, we found that CSR-1a is expressed during spermatogenesis and in several somatic tissues, including the intestine. CSR-1b is expressed constitutively in the germline. small RNA sequencing of CSR-1 complexes shows that they interact with partly overlapping sets of 22G-RNAs. Phenotypic analyses reveal that the essential functions of csr-1 described in the literature coincide with CSR-1b, while CSR-1a plays tissue specific functions. During spermatogenesis, CSR-1a integrates into an sRNA regulatory network including ALG-3, ALG-4 and WAGO-10 that is necessary for fertility at 25°C. In the intestine, CSR-1a silences immunity and pathogen-responsive genes, and its loss results in improved survival from the pathogen Pseudomonas aeruginosa. Our findings functionally distinguish the CSR-1 isoforms and highlight the importance of studying each AGO isoform independently.

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Journal ArticleDOI

piRNAs initiate transcriptional silencing of spermatogenic genes during C. elegans germline development

- 01 Jan 2022 - 
TL;DR: In this paper , the authors show that C. elegans piRNAs trigger the transcriptional silencing of hundreds of spermatogenic genes during sperminogenesis, promoting sperm differentiation and function.
Journal ArticleDOI

Small RNAs in epigenetic inheritance: from mechanisms to trait transmission

TL;DR: The role of small RNAs in transmitting epigenetic information across generations in animals is discussed in this paper, focusing on the mechanisms by which smallRNAs achieve such a function, from the silencing of transgenes to the inheritance of complex traits, such as fertility, stress responses, infections, and behavior.
Journal ArticleDOI

Germ granules and gene regulation in the Caenorhabditis elegans germline.

Carolyn M. Phillips, +1 more
- 01 Mar 2022 - 
TL;DR: An overview of germ granules is provided and the significance of more recent observations that describe how they further demix into sub-granules are focused on, each with unique compositions and functions.
Posted ContentDOI

A comprehensive survey of C. elegans argonaute proteins reveals organism-wide gene regulatory networks and functions

TL;DR: This work systematically analyzed every C. elegans AGO, using CRISPR-Cas9 genome editing to introduce GFP::3xFLAG tags to identify small RNA binding complements and determine the effects of ago loss on small RNA populations and developmental phenotypes.
Journal ArticleDOI

Mechanisms of epigenetic regulation by C. elegans nuclear RNA interference pathways

TL;DR: In this article , the authors highlight recent discoveries in the field of nuclear RNA interference in C. elegans and the roles of nuclear AGO/sRNA complexes in the regulation of gene expression, chromatin organization, genome stability, and transgenerational epigenetic inheritance.
References
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Journal ArticleDOI

A New Dataset of Spermatogenic vs. Oogenic Transcriptomes in the Nematode Caenorhabditis elegans

TL;DR: This work uses RNA-Seq to identify genes expressed in isolated XX gonads, which are approximately 95% germline and 5% somatic gonadal tissue, and suggests that this new dataset will prove useful for studies focusing on C. elegans germ cell biology.
Journal ArticleDOI

Some C. elegans class B synthetic multivulva proteins encode a conserved LIN-35 Rb-containing complex distinct from a NuRD-like complex

TL;DR: It is shown that lin-37 and lin-54 encode proteins in a complex with at least seven synMuv proteins, including LIN-35, the only C. elegans homolog of the mammalian tumor suppressor Rb.2, which likely functions in transcriptional repression and developmental regulation.
Journal ArticleDOI

Structural basis for recognition of arginine methylated Piwi proteins by the extended Tudor domain

TL;DR: It is found that human SND1 binds PIWIL1 in an arginine methylation-dependent manner with a preference for symmetrical dimethylarginine via an aromatic cage and conserved hydrogen bonds, and provides a general paradigm for the binding mechanisms of methylarginined peptides by extended Tudor domains.
Journal ArticleDOI

Sex determination in the germ line

TL;DR: Genetic and molecular models for how sexual fate of germ cells in C. elegans and hermaphrodite spermatogenesis work are presented, and the evidence upon which they are built is summarized.
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