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Conference Paper: F-box protein MEC-15 promotes microtubule stability and neurite growth by antagonizing the activity of HSP90 chaperone network
Title | F-box protein MEC-15 promotes microtubule stability and neurite growth by antagonizing the activity of HSP90 chaperone network |
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Authors | |
Issue Date | 2019 |
Publisher | Genetics Society of America. |
Citation | 22nd International C. elegans Conference, University of Los Angeles, Los Angeles, California, USA, 20-24 June 2019 How to Cite? |
Abstract | Microtubule (MT) stability plays an important role in regulating neurite growth. We previously found that neomorphic (neo) gain-of-function mutations of mec-7/-tubulin led to increased MT stability and the growth of an ectopic, posteriorly directed neurite in the anterior touch receptor neuron (TRN) ALMs. This clear phenotype provided a sensitized background for identifying novel MT regulators. Through a suppressor screen, we identified a loss-of-function (lf) mutation in mec-15, which suppressed the growth of ALM posterior neurite (ALM-PN) in mec-7(neo) mutants. mec-15 encodes a F-box protein with four WD40 repeats. Rescue experiments showed that mec-15 functions cell autonomously in ALMs and its function requires the F-box. mec-15(lf) single mutants showed the shortening of both PLM anterior and posterior neurites and PLM branching defects, suggesting that MEC-15 is required not only for the growth of ectopic ALM neurites but also for the normal development of TRN morphology. Because MEC-15 physically interacts with SKR-1/Skp1, and TRN-specific RNAi against uba-1 (ubiquitin-activating enzyme) suppressed the generation of ALM-PN in mec-7(neo) mutants, a SCF complex-mediated ubiquitination pathway promotes MT stability and neurite development. To understand the downstream target of MEC-15, we took mec-7(neo); mec-15(lf) as the starter strain and carried out another suppressor screen searching for mutants with recovered ALM-PN. We identified one sti-1(lf), four pph-5(lf), and two dlk-1(lf) alleles in the screen. STI-1/Hop is a cochaperone that physically links Hsp70 and Hsp90 via the tetratricopeptide repeat (TPR)-domain, and the phosphatase PPH-5 is a TPR-containing Hsp90 cofactor. Through a candidate-based approach, we found that similar to mutations in sti-1 and pph-5, the loss of hsp-90, hsp-110/Hsp70, and daf-41/p23 also recovered the growth ALM-PN in mec-15(lf); mec-7(neo) double mutants and rescued the TRN developmental defects in mec-15(lf) single mutants. Electron microscopic studies found that the number of MTs in a cross-section of TRN neurite is dramatically decreased in mec-15(lf) mutants and this defect is rescued in mec-15; pph-5 or mec-15; sti-1 double mutants. Functionally, the reduced touch sensitivity of mec-15 mutants is restored in those double mutants. Thus, our data suggest that MEC-15 promotes MT stability and neuronal growth by inhibiting the Hsp90 chaperone network. One potential target of Hsp90 chaperone is DLK-1, the Dual-Leucine zipper Kinase, which was recently identified as a HSP90 client in mouse neurons. We found that dlk-1(lf) mutations suppressed the defects caused by the loss of mec-15 and overexpression of dlk-1 in the TRNs rescued the lack of Hsp90 chaperones, causing MT instability and neurite growth defects. Therefore, our results revealed an unexpectedly negative regulation of neurodevelopment by the molecular chaperones. |
Description | Session: Neuronal Development, Degeneration and Regeneration - no. 169 |
Persistent Identifier | http://hdl.handle.net/10722/272557 |
DC Field | Value | Language |
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dc.contributor.author | Zheng, C | - |
dc.contributor.author | Atlas, E | - |
dc.contributor.author | Lee, HMT | - |
dc.contributor.author | Jao, SLJ | - |
dc.contributor.author | Sayegh, NY | - |
dc.contributor.author | Nguyen, KCQ | - |
dc.contributor.author | Hall, DH | - |
dc.contributor.author | Chalfie, M | - |
dc.date.accessioned | 2019-07-20T10:44:35Z | - |
dc.date.available | 2019-07-20T10:44:35Z | - |
dc.date.issued | 2019 | - |
dc.identifier.citation | 22nd International C. elegans Conference, University of Los Angeles, Los Angeles, California, USA, 20-24 June 2019 | - |
dc.identifier.uri | http://hdl.handle.net/10722/272557 | - |
dc.description | Session: Neuronal Development, Degeneration and Regeneration - no. 169 | - |
dc.description.abstract | Microtubule (MT) stability plays an important role in regulating neurite growth. We previously found that neomorphic (neo) gain-of-function mutations of mec-7/-tubulin led to increased MT stability and the growth of an ectopic, posteriorly directed neurite in the anterior touch receptor neuron (TRN) ALMs. This clear phenotype provided a sensitized background for identifying novel MT regulators. Through a suppressor screen, we identified a loss-of-function (lf) mutation in mec-15, which suppressed the growth of ALM posterior neurite (ALM-PN) in mec-7(neo) mutants. mec-15 encodes a F-box protein with four WD40 repeats. Rescue experiments showed that mec-15 functions cell autonomously in ALMs and its function requires the F-box. mec-15(lf) single mutants showed the shortening of both PLM anterior and posterior neurites and PLM branching defects, suggesting that MEC-15 is required not only for the growth of ectopic ALM neurites but also for the normal development of TRN morphology. Because MEC-15 physically interacts with SKR-1/Skp1, and TRN-specific RNAi against uba-1 (ubiquitin-activating enzyme) suppressed the generation of ALM-PN in mec-7(neo) mutants, a SCF complex-mediated ubiquitination pathway promotes MT stability and neurite development. To understand the downstream target of MEC-15, we took mec-7(neo); mec-15(lf) as the starter strain and carried out another suppressor screen searching for mutants with recovered ALM-PN. We identified one sti-1(lf), four pph-5(lf), and two dlk-1(lf) alleles in the screen. STI-1/Hop is a cochaperone that physically links Hsp70 and Hsp90 via the tetratricopeptide repeat (TPR)-domain, and the phosphatase PPH-5 is a TPR-containing Hsp90 cofactor. Through a candidate-based approach, we found that similar to mutations in sti-1 and pph-5, the loss of hsp-90, hsp-110/Hsp70, and daf-41/p23 also recovered the growth ALM-PN in mec-15(lf); mec-7(neo) double mutants and rescued the TRN developmental defects in mec-15(lf) single mutants. Electron microscopic studies found that the number of MTs in a cross-section of TRN neurite is dramatically decreased in mec-15(lf) mutants and this defect is rescued in mec-15; pph-5 or mec-15; sti-1 double mutants. Functionally, the reduced touch sensitivity of mec-15 mutants is restored in those double mutants. Thus, our data suggest that MEC-15 promotes MT stability and neuronal growth by inhibiting the Hsp90 chaperone network. One potential target of Hsp90 chaperone is DLK-1, the Dual-Leucine zipper Kinase, which was recently identified as a HSP90 client in mouse neurons. We found that dlk-1(lf) mutations suppressed the defects caused by the loss of mec-15 and overexpression of dlk-1 in the TRNs rescued the lack of Hsp90 chaperones, causing MT instability and neurite growth defects. Therefore, our results revealed an unexpectedly negative regulation of neurodevelopment by the molecular chaperones. | - |
dc.language | eng | - |
dc.publisher | Genetics Society of America. | - |
dc.relation.ispartof | 22nd International C. elegans Conference | - |
dc.title | F-box protein MEC-15 promotes microtubule stability and neurite growth by antagonizing the activity of HSP90 chaperone network | - |
dc.type | Conference_Paper | - |
dc.identifier.email | Zheng, C: cgzheng@hku.hk | - |
dc.identifier.email | Lee, HMT: tlhm@hku.hk | - |
dc.identifier.authority | Zheng, C=rp02473 | - |
dc.identifier.hkuros | 299215 | - |
dc.publisher.place | United States | - |