Posttranslational modification of microtubules by the MATCAP detyrosinase

Author:

Landskron Lisa1ORCID,Bak Jitske1ORCID,Adamopoulos Athanassios1ORCID,Kaplani Konstantina2ORCID,Moraiti Maria1ORCID,van den Hengel Lisa G.1,Song Ji-Ying3ORCID,Bleijerveld Onno B.4ORCID,Nieuwenhuis Joppe5,Heidebrecht Tatjana1,Henneman Linda6,Moutin Marie-Jo7ORCID,Barisic Marin89ORCID,Taraviras Stavros2ORCID,Perrakis Anastassis1ORCID,Brummelkamp Thijn R.1ORCID

Affiliation:

1. Oncode Institute, Division of Biochemistry, Netherlands Cancer Institute, 1066CX Amsterdam, Netherlands.

2. Department of Physiology, School of Medicine, University of Patras, 26504 Patras, Greece.

3. Experimental Animal Pathology, Netherlands Cancer Institute, Amsterdam, Netherlands.

4. Proteomics Facility, Netherlands Cancer Institute, 1066CX Amsterdam, Netherlands.

5. Division of Biochemistry, Netherlands Cancer Institute, Plesmanlaan 121, 1066CX Amsterdam, Netherlands.

6. Transgenic Core Facility, Mouse Clinic for Cancer and Aging (MCCA), Netherlands Cancer Institute, 1066CX Amsterdam, Netherlands.

7. Université Grenoble Alpes, INSERM, U1216, CNRS, Grenoble Institut Neurosciences, 38000 Grenoble, France.

8. Cell Division and Cytoskeleton, Danish Cancer Society Research Center (DCRC), 2100 Copenhagen, Denmark.

9. Department of Cellular and Molecular Medicine, Faculty of Health Sciences, University of Copenhagen, Copenhagen, Denmark.

Abstract

The detyrosination-tyrosination cycle involves the removal and religation of the C-terminal tyrosine of α-tubulin and is implicated in cognitive, cardiac, and mitotic defects. The vasohibin–small vasohibin-binding protein (SVBP) complex underlies much, but not all, detyrosination. We used haploid genetic screens to identify an unannotated protein, microtubule associated tyrosine carboxypeptidase (MATCAP), as a remaining detyrosinating enzyme. X-ray crystallography and cryo–electron microscopy structures established MATCAP’s cleaving mechanism, substrate specificity, and microtubule recognition. Paradoxically, whereas abrogation of tyrosine religation is lethal in mice, codeletion of MATCAP and SVBP is not. Although viable, defective detyrosination caused microcephaly, associated with proliferative defects during neurogenesis, and abnormal behavior. Thus, MATCAP is a missing component of the detyrosination-tyrosination cycle, revealing the importance of this modification in brain formation.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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