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Biomedical subjects

A K Floyd

Publications and source records attributed to A K Floyd.

3 recordsLinked to original sources

[Biloma].

Most cases of biloma are caused by liver trauma or surgical intervention. However, spontaneous cases have been reported. We present a patient with spontaneous biloma which may have developed secondary to stenosis of the common bile duct or infarction of the liver. The initial treatment was percutaneous drainage, followed by ERCP with papillotomy and stenting of the common bile duct. Despite this therapy symptoms recurred and the patient had to undergo resection of a liver segment. The treatment of biloma in general is discussed.

Adult↗

Electrophoretic analysis of basal body (centriole) proteins.

Purified basal bodies isolated from the chicken oviduct were analyzed by using several different electrophoretic techniques. For comparison, oviduct cilia proteins were also analyzed. Prominent among the basal body proteins were the tubulin subunits (representing approximately 20% of the protein) and a low molecular weight protein (approximately 17,400 daltons). In addition, major bands were present with molecular weights of approximately 180,000 and approximately 90,000. Electrophoretically purified basal body tubulin subunits had isoelectric points of 5.45 (alpha subunit) and 5.1 (beta subunit). In addition, these isoelectric focus gels contained at least four other proteins that had higher isoelectric points, which indicates that tubulin purified by one-dimensional electrophoresis contains other proteins. On the basis of several different electrophoretic techniques, it was found that basal body tubulin differed from cilia tubulin even though they both had similar isoelectric focusing points. Whereas basal bodies did not contain any proteins that corresponded to the cilia dynein ATPase, five different sets of proteins were common to both cilia and basal bodies. Basal bodies did not contain significant amounts of actin, myosin, or desmin.

Animals↗

Adenosine triphosphate induced change in light scattering of isolated basal bodies.

Suspensions of isolated basal bodies undergo a characteristic decrease in turbidity following their exposure to 10(-3) M ATP. Typically, turbidity changes range from 8% to 20%, depending on the preparation, with an average change of 12%. Nucleotides other than ATP did not cause a turbidity decrease. The reaction has a pH optimum of pH 8.5 and is inhibited by concentrations of divalent cations greater than 2 X 10(-3) M. These results indicate that ATP induces a conformational change in the basal body that may be related to its activity in the cell.

Adenosine Triphosphate↗