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1.
Elife ; 102021 07 26.
Artigo em Inglês | MEDLINE | ID: mdl-34310279

RESUMO

The microtubule-associated protein, doublecortin-like kinase 1 (DCLK1), is highly expressed in a range of cancers and is a prominent therapeutic target for kinase inhibitors. The physiological roles of DCLK1 kinase activity and how it is regulated remain elusive. Here, we analyze the role of mammalian DCLK1 kinase activity in regulating microtubule binding. We found that DCLK1 autophosphorylates a residue within its C-terminal tail to restrict its kinase activity and prevent aberrant hyperphosphorylation within its microtubule-binding domain. Removal of the C-terminal tail or mutation of this residue causes an increase in phosphorylation within the doublecortin domains, which abolishes microtubule binding. Therefore, autophosphorylation at specific sites within DCLK1 has diametric effects on the molecule's association with microtubules. Our results suggest a mechanism by which DCLK1 modulates its kinase activity to tune its microtubule-binding affinity. These results provide molecular insights for future therapeutic efforts related to DCLK1's role in cancer development and progression.


Assuntos
Peptídeos e Proteínas de Sinalização Intracelular/metabolismo , Neoplasias/enzimologia , Neoplasias/patologia , Proteínas Serina-Treonina Quinases/metabolismo , Animais , Quinases Semelhantes a Duplacortina , Humanos , Peptídeos e Proteínas de Sinalização Intracelular/genética , Microtúbulos/metabolismo , Mutação , Neoplasias/genética , Neoplasias/metabolismo , Fosforilação , Ligação Proteica , Proteínas Serina-Treonina Quinases/genética
2.
Autophagy ; 13(8): 1331-1347, 2017 Aug 03.
Artigo em Inglês | MEDLINE | ID: mdl-28598240

RESUMO

Macroautophagy/autophagy is a dynamic and inducible catabolic process that responds to a variety of hormonal and environmental cues. Recent studies highlight the interplay of this central pathway in a variety of pathophysiological diseases. Although defective autophagy is implicated in melanocyte proliferation and pigmentary disorders, the mechanistic relationship between the 2 pathways has not been elucidated. In this study, we show that autophagic proteins LC3B and ATG4B mediate melanosome trafficking on cytoskeletal tracks. While studying melanogenesis, we observed spatial segregation of LC3B-labeled melanosomes with preferential absence at the dendritic ends of melanocytes. This LC3B labeling of melanosomes did not impact the steady-state levels of these organelles but instead facilitated their intracellular positioning. Melanosomes primarily traverse on microtubule and actin cytoskeletal tracks and our studies reveal that LC3B enables the assembly of microtubule translocon complex. At the microtubule-actin crossover junction, ATG4B detaches LC3B from melanosomal membranes by enzymatic delipidation. Further, by live-imaging we show that melanosomes transferred to keratinocytes lack melanocyte-specific LC3B. Our study thus elucidates a new role for autophagy proteins in directing melanosome movement and reveal the unconventional use of these proteins in cellular trafficking pathways. Such crosstalk between the central cellular function and housekeeping pathway may be a crucial mechanism to balance melanocyte bioenergetics and homeostasis.


Assuntos
Proteínas Relacionadas à Autofagia/metabolismo , Autofagia , Cisteína Endopeptidases/metabolismo , Citoesqueleto/metabolismo , Melanossomas/metabolismo , Proteínas Associadas aos Microtúbulos/metabolismo , Movimento , Citoesqueleto de Actina/metabolismo , Animais , Citoesqueleto/ultraestrutura , Dendritos/metabolismo , Técnicas de Silenciamento de Genes , Humanos , Queratinócitos/metabolismo , Lipídeos/química , Melanócitos/metabolismo , Melanócitos/ultraestrutura , Melanoma Experimental/metabolismo , Melanoma Experimental/patologia , Melanoma Experimental/ultraestrutura , Melanossomas/ultraestrutura , Camundongos Endogâmicos C57BL , Microtúbulos/metabolismo , Pigmentação
3.
Nat Chem Biol ; 10(7): 542-51, 2014 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-24937072

RESUMO

The recurrent interaction of skin with sunlight is an intrinsic constituent of human life, and exhibits both beneficial and detrimental effects. The apparent robust architectural framework of skin conceals remarkable mechanisms that operate at the interface between the surface and environment. In this Review, we discuss three distinct protective mechanisms and response pathways that safeguard skin from deleterious effects of ultraviolet (UV) radiation. The unique stratified epithelial architecture of human skin along with the antioxidant-response pathways constitutes the important defense mechanisms against UV radiation. The intricate pigmentary system and its intersection with the immune-system cytokine axis delicately balance tissue homeostasis. We discuss the relationship among these networks in the context of an unusual depigmenting disorder, vitiligo. The elaborate tunable mechanisms, elegant multilayered architecture and evolutionary selection pressures involved in skin and sunlight interaction makes this a compelling model to understand biological complexity.


Assuntos
Queratinócitos/metabolismo , Melaninas/metabolismo , Melanócitos/metabolismo , Melanossomas/metabolismo , Pele/metabolismo , Antioxidantes/metabolismo , Ceramidas/metabolismo , Expressão Gênica , Homeostase , Humanos , Queratinócitos/citologia , Queratinócitos/efeitos da radiação , Melaninas/genética , Melanócitos/citologia , Melanócitos/efeitos da radiação , Melanossomas/efeitos da radiação , Fosfolipídeos/metabolismo , Espécies Reativas de Oxigênio/metabolismo , Pele/citologia , Pele/efeitos da radiação , Luz Solar , Raios Ultravioleta , Vitiligo/genética , Vitiligo/metabolismo , Vitiligo/patologia
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