Division of Urology, Department of Surgery, Cardinal Tien Hospital, New Taipei, Taiwan.
Department of Chemistry, Fu Jen Catholic University, New Taipei City, Taiwan.
J Cell Mol Med. 2024 Jan;28(2):e18031. doi: 10.1111/jcmm.18031. Epub 2023 Nov 8.
Approximately 10%-15% of couples worldwide are infertile, and male factors account for approximately half of these cases. Teratozoospermia is a major cause of male infertility. Although various mutations have been identified in teratozoospermia, these can vary among ethnic groups. In this study, we performed whole-exome sequencing to identify genetic changes potentially causative of teratozoospermia. Out of seven genes identified, one, ATP/GTP Binding Protein 1 (AGTPBP1), was characterized, and three missense changes were identified in two patients (Affected A: p.Glu423Asp and p.Pro631Leu; Affected B: p.Arg811His). In those two cases, severe sperm head and tail defects were observed. Moreover, AGTPBP1 localization showed a fragmented pattern compared to control participants, with specific localization in the neck and annulus regions. Using murine models, we found that AGTPBP1 is localized in the manchette structure, which is essential for sperm structure formation. Additionally, in Agtpbp1-null mice, we observed sperm head and tail defects similar to those in sperm from AGTPBP1-mutated cases, along with abnormal polyglutamylation tubulin and decreasing △-2 tubulin levels. In this study, we established a link between genetic changes in AGTPBP1 and human teratozoospermia for the first time and identified the role of AGTPBP1 in deglutamination, which is crucial for sperm formation.
全球约有 10%-15%的夫妇患有不孕症,其中约一半的病例是由男性因素引起的。畸形精子症是男性不育的主要原因。尽管已经在畸形精子症中鉴定出各种突变,但这些突变在不同种族之间可能存在差异。在这项研究中,我们进行了全外显子组测序,以鉴定可能导致畸形精子症的遗传变化。在鉴定出的七个基因中,一个是 ATP/GTP 结合蛋白 1(AGTPBP1),对其进行了特征描述,并在两名患者中发现了三个错义变化(受影响 A:p.Glu423Asp 和 p.Pro631Leu;受影响 B:p.Arg811His)。在这两个病例中,观察到严重的精子头部和尾部缺陷。此外,与对照组相比,AGTPBP1 的定位表现出碎片化模式,在颈部和环状区域有特定的定位。使用鼠模型,我们发现 AGTPBP1 定位于顶体小体结构中,这对于精子结构的形成是必不可少的。此外,在 Agtpbp1 敲除小鼠中,我们观察到与 AGTPBP1 突变病例精子相似的精子头部和尾部缺陷,同时还观察到异常多聚谷氨酰化微管和减少的△-2 微管水平。在这项研究中,我们首次建立了 AGTPBP1 基因突变与人类畸形精子症之间的联系,并确定了 AGTPBP1 在去氨甲酰化中的作用,这对于精子形成至关重要。