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S D Dover

Publications and source records attributed to S D Dover.

10 recordsLinked to original sources

The inner dynein arm complex: compatible images from freeze-etch and thin section methods of microscopy.

A study has been made of the inner dynein arm complex in the sperm flagellum of Gallus domesticus. It has been found that images of the complex made from highly contrasted, approx. 20 nm, sections are very largely compatible with images made from replicas of rapidly cryofixed material. This suggests that neither technique seriously distorts the native state. From both types of image, we conclude that the most proximal group of inner dynein arm heads (IDA 1) is related to spoke S1 and consists of 3 heads with fine connections to the B-tubule. IDA 2 consists of 2 such heads and is related to spoke S2. IDA 3 is apparently single headed and lies close to the A-attachment of spoke S3. This arrangement of IDAs repeats every 96 nm. Between the IDAs and outer dynein arms (ODAs), lying close to IDAs 2 and 3, is a strap-like linkage to the next B-tubule; it is argued that this represents the circumferential link, nexin. In sections, but not consistently in replicas, IDA2 lies closer to the plane of the nexin link than does IDA 1. In the presence of ATP and vanadate, little change is seen in the IDA complex except for an ill-defined alteration to IDA 1. It is speculated that the apparently smaller size of the inner arm heads (compared with the ODA major subunit) may have functional implications in relation to maximal sliding velocity.

Adenosine Triphosphate

Architecture of the outer arm dynein ATPase in an avian sperm flagellum, with further evidence for the B-link.

Demembranated sperm flagella from Gallus domesticus have been prepared by the rapid-freeze, deep-etch, rotary replica technique in order to study the three-dimensional morphology of the outer dynein arm (ODA)-ATPase complex. In general, the ODAs resemble most closely those from the sea urchin Strongylocentrotus described by W. S. Sale et al. In the 'rigor' condition, the ODA consists of a major subunit (the head), from which a slender link extends to the adjacent B-tubule (the B-link). A smaller, intermediate subunit lies adjacent to the head, distally, and a further extension of the complex, the minor subunit, continues distally beneath the head domain of the next arm complex, where it attaches to the A-tubule. In the presence of ATP and vanadate ('relaxed' condition), the attachment point of the B-link to the head is shifted to a more proximal position, and the minor subunit is no longer visible. This is interpreted as resulting from a rotation of the head. These features are demonstrated stereoscopically, and from several viewpoints. Image enhancement has been used to clarify and define the repetitive features of the dynein arrays. In addition, some of the axonemes have been imaged from highly contrasted 20 nm thin sections; the detection of B-links in such sections means that these slender structures cannot be considered artefacts of the rapid-freeze, deep-etch protocol.

Adenosine Triphosphate

Three-dimensional X-ray microscopy with accurate registration of tomographic sections.

X-ray microtomography has been used to study the internal flaws and external shape of a 0.75 X 1 mm copper sulphate crystal at a resolution of 25 microns. The problems of accurate tomographic reconstruction and the subsequent registration of the reconstructed sections to give a complete 3-D image are considered when the position of the axis of rotation of the specimen varies slightly between projections.

Copper

X-ray microscopy using computerized axial tomography.

Computerized axial tomography with MoK alpha X-radiation has been used to study a 0.8 X 0.8 mm column of human femoral bone at a resolution of 15 micron. This non-destructive X-ray microscopic technique allowed 'sections' to be made with 25 micron separation and the distribution of linear absorption coefficient in each section to be determined.

Bone and Bones