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The major brain isoform of Kif1b lacks the putative mitochondria-binding domain

The major brain isoform of Kif1b lacks the putative mitochondria-binding domain
The major brain isoform of Kif1b lacks the putative mitochondria-binding domain

Kinesin and kinesin superfamily proteins are molecular motors involved in important intracellular functions such as organelle transport and cell division. They are microtubule-activated ATPases composed of a motor domain that binds to microtubules and a cargo-binding domain that binds to specific organelles. While searching for the slow Wallerian degeneration mutation (WldS)) on distal mouse Chromosome (Chr) 4, we have identified a member of the kinesin superfamily whose predicted gene product has the N-terminal motor domain of Kif1b and a novel C-terminal cargo-binding domain homologous to Kif1a. Kif1b is responsible for the movement of mitochondria along the axon, but the novel isoform containing the alternative C-terminal domain is likely to have a different cargo-binding specificity, cDNA library screening and Northern blot analysis indicate that the alternatively spliced form of Kif1b containing the novel 3' end accounts for the most part of Kif1b expression. We also found more alternatively spliced exons that can give rise to heterogeneous transcripts. Therefore, alternative splicing, as well as multiple genes, may contribute to the selective movement of diverse organelles by anterograde axonal transport. Kif1b maps on distal mouse Chr 4, within the Wld genetic candidate interval, but outside the recently identified triplication. There is, however, no evidence that Kif1b is the Wld gene.

0938-8990
617-622
Conforti, Laura
fa468fd3-dee5-44d6-af34-7625225be121
Buckmaster, E. Anne
cc442678-cea3-4c45-8852-83cc5f3e9ed7
Tarlton, Andrea
4ac9547e-74dc-4213-8836-56fb1bafe196
Brown, Michael C.
ee1a57a1-584c-4df7-a407-412c67812ac1
Lyon, Mary F.
e912ad7d-633b-41d7-99db-66905a3a6870
Perry, V. Hugh
8f29d36a-8e1f-4082-8700-09483bbaeae4
Coleman, Michael P.
6117d2e4-782c-4f36-94b6-866cfb244525
Conforti, Laura
fa468fd3-dee5-44d6-af34-7625225be121
Buckmaster, E. Anne
cc442678-cea3-4c45-8852-83cc5f3e9ed7
Tarlton, Andrea
4ac9547e-74dc-4213-8836-56fb1bafe196
Brown, Michael C.
ee1a57a1-584c-4df7-a407-412c67812ac1
Lyon, Mary F.
e912ad7d-633b-41d7-99db-66905a3a6870
Perry, V. Hugh
8f29d36a-8e1f-4082-8700-09483bbaeae4
Coleman, Michael P.
6117d2e4-782c-4f36-94b6-866cfb244525

Conforti, Laura, Buckmaster, E. Anne, Tarlton, Andrea, Brown, Michael C., Lyon, Mary F., Perry, V. Hugh and Coleman, Michael P. (1999) The major brain isoform of Kif1b lacks the putative mitochondria-binding domain. Mammalian Genome, 10 (6), 617-622. (doi:10.1007/s003359901056).

Record type: Article

Abstract

Kinesin and kinesin superfamily proteins are molecular motors involved in important intracellular functions such as organelle transport and cell division. They are microtubule-activated ATPases composed of a motor domain that binds to microtubules and a cargo-binding domain that binds to specific organelles. While searching for the slow Wallerian degeneration mutation (WldS)) on distal mouse Chromosome (Chr) 4, we have identified a member of the kinesin superfamily whose predicted gene product has the N-terminal motor domain of Kif1b and a novel C-terminal cargo-binding domain homologous to Kif1a. Kif1b is responsible for the movement of mitochondria along the axon, but the novel isoform containing the alternative C-terminal domain is likely to have a different cargo-binding specificity, cDNA library screening and Northern blot analysis indicate that the alternatively spliced form of Kif1b containing the novel 3' end accounts for the most part of Kif1b expression. We also found more alternatively spliced exons that can give rise to heterogeneous transcripts. Therefore, alternative splicing, as well as multiple genes, may contribute to the selective movement of diverse organelles by anterograde axonal transport. Kif1b maps on distal mouse Chr 4, within the Wld genetic candidate interval, but outside the recently identified triplication. There is, however, no evidence that Kif1b is the Wld gene.

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Published date: June 1999

Identifiers

Local EPrints ID: 489317
URI: http://eprints.soton.ac.uk/id/eprint/489317
ISSN: 0938-8990
PURE UUID: 913d881f-a45f-4f13-90db-e03e1540922e

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Date deposited: 19 Apr 2024 16:53
Last modified: 19 Apr 2024 17:04

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Contributors

Author: Laura Conforti
Author: E. Anne Buckmaster
Author: Andrea Tarlton
Author: Michael C. Brown
Author: Mary F. Lyon
Author: V. Hugh Perry
Author: Michael P. Coleman

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