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Holmes, K. H. M.

Publications and source records attributed to Holmes, K. H. M..

2 recordsLinked to original sources

Togaram Ensures Axial Alignment of the Sperm Neck

The sperm neck must remain mechanically stable to preserve a straight head-tail axis during spermiogenesis, yet the mechanisms that maintain this alignment after head-tail attachment forms are poorly understood. Here, using Drosophila, we identify Togaram (Toga), the ortholog of mammalian TOGARAM1, as a regulator of this maintenance phase. Toga localizes to the sperm neck and to a broader perinuclear microtubule scaffold that surrounds the nucleus, which we term the Sperm Microtubule Cage (SMC). Depletion of Toga causes a striking off-axis phenotype in which the centriole usually remains attached to the nucleus but fails to maintain a straight head-tail axis, whereas complete detachment is comparatively rare. Live imaging shows that this defect arises after initial attachment has formed, indicating a maintenance defect rather than a failure of head-tail assembly. Mechanistically, Toga is dispensable for initial formation of head and neck microtubules but is required for their stabilization during Canoe-stage remodeling. Loss of Toga increases microtubule turnover, strongly reduces acetylated tubulin in the manchette, SMC, and neck region, and leaves the sperm neck vulnerable to buckling. Off-axis spermatids are depleted at later stages, consistent with selective loss of mechanically compromised cells. Finally, Cep104 and CCDC66 associate with Toga in cultured cells and are likewise required for axial alignment, consistent with a conserved module analogous to the mammalian ciliary tip module. Together, these findings support a model in which Toga stabilizes sperm head and neck microtubules to preserve a straight head-tail axis during the maintenance phase of spermiogenesis.

cell biology↗

The Proximal Centriole-Like Structure Anchors the Centriole to the Sperm Nucleus

Proper connection between the sperm head and tail is critical for sperm motility and fertilization. The link between the head and tail is mediated by the Head-Tail Coupling Apparatus (HTCA), which secures the axoneme (tail) to the nucleus (head). However, the molecular architecture of the HTCA is not well understood. Here, we use Drosophila to create a high-resolution map of proteins and structures at the HTCA throughout spermiogenesis. Using structured illumination microscopy, we demonstrate that key HTCA proteins Spag4 and Yuri form a Centriole Cap that surrounds the centriole (or Basal Body) as it is inserted, or embedded into the surface of the nucleus. As development progresses, the centriole is laterally displaces to the side of the nucleus, during which time the HTCA expands under the nucleus, forming what we term the Nuclear Shelf. We next show that the proximal centriole-like (PCL) structure is positioned under the Nuclear Shelf and functions as a critical stabilizer of the centriole-nuclear attachment. Together, our data indicate that the HTCA is complex, multi-point attachment site that simultaneously engages the PCL, the centriole, and the nucleus to ensure proper head-tail connection during late-stage spermiogenesis.

developmental biology↗