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J Shanks

Publications and source records attributed to J Shanks.

47 records · Page 3Linked to original sources

Concerning the location of the GTP hydrolysis site on microtubules.

The kinetics for GTP hydrolysis associated with microtubule assembly with microtubular protein has been analyzed under reaction conditions where tubulin-GDP does not readily assemble into microtubules. The GTPase rate is only slightly faster during the time when net microtubule assembly occurs, as compared with steady state. The slightly slower steady-state GTPase rate apparently results from GDP product inhibition, since the progressive decrease in the rate can be quantitatively accounted for using the previously determined GTP dissociation constant and the Ki value for GDP. Since the GTPase rate is not a function of the rate for net microtubule assembly, it is concluded that GTP hydrolysis is not required for tubulin subunit incorporation into microtubules. The constancy of the rate indicates that the GTPase reaction occurs at a site, the concentration of which does not change during the assembly process. This result is consistent with a reaction scheme in which GTP hydrolysis occurs primarily at microtubule ends. We propose that hydrolysis occurs at microtubule ends, at the interface between a long core of tubulin-GDP subunits and a short cap of tubulin-GTP subunits.

GTP Phosphohydrolases↗

Endemic amoebic abscess.

An unusual case of endemic amoebic abscess of the liver in a New Zealand is presented. The clinical manifestations and treatment are discussed.

Adult↗

A comparison of aphasic and non-brain-injured adults on a dichotic CV-syllable listening task.

A dichotic CV-syllable listening task was administered to a group of eleven non-brain-injured adults and to a group of eleven adult aphasics. The results of this study may be summarized as follows: 1)The group of non-brain-injured adults showed a slight right ear advantage for dichotically presented CV-syllables. 2)In comparison with the control group the asphasic group showed a bilateral deficit in response to the dichotic CV-syllables, superimposed on a non-significant right ear advantage. 3) The asphasic group demonstrated a great deal of intersubject variability on the dichotic task with six aphasics showing a right ear preference for the stimuli. The non-brain-injured subjects performed more homogeneously on the task. 4) The two subgroups of aphasics, a right ear advantage group and a left ear advantage group, performed significantly different on the dichotic listening task. 5) Single correct data analysis proved valuable by deleting accuracy of report for an examination of trials in which there was true competition for the single left hemispheric speech processor. These results were analyzed in terms of a functional model of auditory processing. In view of this model, the bilateral deficit in dichotic performance of the asphasic group was accounted for by the presence of a lesion within the dominant left hemisphere, where the speech signals from both ears converge for final processing. The right ear advantage shown by one asphasic subgroup was explained by a lesion interfering with the corpus callosal pathways from the left hemisphere; the left ear advantage observed within the other subgroup was explained by a lesion in the area of the auditory processor of the left hemisphere.

Aphasia↗

Skeletal abnormalities in Meckel syndrome.

Meckel syndrome is an autosomal recessive condition with a wide phenotypic variation. The most consistent features are cystic kidneys and intrahepatic bile duct anomalies, frequently accompanied by central nervous system (CNS) malformations and polydactyly. Approximately one sixth of all cases also show skeletal anomalies. We present two cases, siblings born to a consanguineous couple, in whom there was a striking curvature and shortening of the long bones in addition to cystic kidneys, CNS abnormalities, and polydactyly. Histological examination of the long bones in the second affected sibling showed mid-diaphysial ectopic cartilaginous growth plates differentiating the long bone changes from other skeletal dysplasias with similar radiological features.

Bile Ducts, Intrahepatic↗