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Published on: May 27, 2022
Absence of annulus in human asthenozoospermia: case report
P Lhuillier1, B Rode, D Escalier
1Département Génétique et Développement, Institut Cochin, 24 rue du faubourg Saint-Jacques, Paris 75014, France.
Abstract:
The annulus is a septin-based ring structure located at the junction of the midpiece (MP) and the principal piece (PP) of spermatozoa flagellum. In the mouse, deletion of Septin 4, a structural component of the sperm annulus, prevents annulus formation and leads to MP-PP disjunction, flagellar bending, asthenozoospermia and male sterility. Testis anion transporter 1 (Tat1) is a germ cell-specific member of the SLC26 anion transporter family and is co-expressed with Septin 4 at the sperm annulus. Interestingly, Tat1 null sperm bear an atrophic annulus, causing a phenotype similar to that of Sept4 null sperm. We searched for Tat1 misexpression and/or mislocalization in spermatozoa from asthenozoospermic subjects (n = 75) and controls by performing an immunofluorescence detection assay on sperm smear preparations. We found one patient showing moderate asthenozoospermia, with 97% of sperm lacking Tat1, Septin 4 and Septin 7 proteins at the annulus. We confirmed the absence of the annulus structure by transmission electron microscopy and observed that spermatozoa from the patient displayed MP-PP disjunction and abnormal mitochondrial organization. We show that the structural defects in sperm are not caused by abnormal transcription or point mutations of the TAT1 and SEPT4 genes; however, although both proteins are expressed, they are not properly localized at sperm annulus. The case we studied, so far unreported in human, confirms the involvement of Tat1 and Septin proteins in the constitution of the annulus, but also raises questions about the function of this structure in human sperm motility.
Insights
Testis anion transporter 1 (Tat1) and Septin proteins are crucial for sperm annulus formation. A human patient lacking these proteins at the annulus showed impaired sperm motility and structural defects, highlighting their role in male fertility.
Area of Science:
- Reproductive Biology
- Spermatozoa Ultrastructure
- Male Fertility Research
Background:
- The sperm annulus, a septin-based ring structure, connects the midpiece and principal piece of the flagellum.
- Septin 4 deficiency in mice disrupts annulus formation, leading to male sterility.
- Testis anion transporter 1 (Tat1) is co-expressed with Septin 4 at the sperm annulus and its absence causes similar phenotypes in mice.
Observation:
- Immunofluorescence analysis of spermatozoa from asthenozoospermic subjects revealed one patient with 97% sperm lacking Tat1, Septin 4, and Septin 7 at the annulus.
- Transmission electron microscopy confirmed the absence of the annulus structure in the patient's sperm.
- The patient's spermatozoa exhibited midpiece-principal piece disjunction and abnormal mitochondrial organization.
Findings:
- The structural defects in the patient's sperm were not due to abnormal gene transcription or point mutations in TAT1 and SEPT4.
- Both Tat1 and Septin proteins were expressed but mislocalized, failing to assemble at the sperm annulus.
- This case represents the first reported human instance linking Tat1 and Septin mislocalization to annulus defects and asthenozoospermia.
Implications:
- Confirms the essential role of Tat1 and Septin proteins in the structural integrity of the human sperm annulus.
- Suggests that annulus defects, due to protein mislocalization, contribute to human male infertility.
- Raises further questions about the specific functions of the sperm annulus in human sperm motility and fertilization.
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