Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Autocrine/Paracrine Slit–Robo Signaling Controls Optic Lobe Development in Drosophila melanogaster

View through CrossRef
Cell segregation mechanisms play essential roles during the development of the central nervous system (CNS) to support its organization into distinct compartments. The Slit protein is a secreted signal, classically considered a paracrine repellent for axonal growth through Robo receptors. However, its function in the compartmentalization of CNS is less explored. In this work, we show that Slit and Robo3 are expressed in the same neuronal population of the Drosophila optic lobe, where they are required for the correct compartmentalization of optic lobe neuropils by the action of an autocrine/paracrine mechanism. We characterize the endocytic route followed by the Slit/Robo3 complex and detected genetic interactions with genes involved in endocytosis and actin dynamics. Thus, we report that the Slit-Robo3 pathway regulates the morphogenesis of the optic lobe through an atypical autocrine/paracrine mechanism in addition to its role in axon guidance, and in association with proteins of the endocytic pathway and small GTPases.
Title: Autocrine/Paracrine Slit–Robo Signaling Controls Optic Lobe Development in Drosophila melanogaster
Description:
Cell segregation mechanisms play essential roles during the development of the central nervous system (CNS) to support its organization into distinct compartments.
The Slit protein is a secreted signal, classically considered a paracrine repellent for axonal growth through Robo receptors.
However, its function in the compartmentalization of CNS is less explored.
In this work, we show that Slit and Robo3 are expressed in the same neuronal population of the Drosophila optic lobe, where they are required for the correct compartmentalization of optic lobe neuropils by the action of an autocrine/paracrine mechanism.
We characterize the endocytic route followed by the Slit/Robo3 complex and detected genetic interactions with genes involved in endocytosis and actin dynamics.
Thus, we report that the Slit-Robo3 pathway regulates the morphogenesis of the optic lobe through an atypical autocrine/paracrine mechanism in addition to its role in axon guidance, and in association with proteins of the endocytic pathway and small GTPases.

Related Results

Thyroid Hemiagenesis: A Single-Center Case Series
Thyroid Hemiagenesis: A Single-Center Case Series
Abstract Introduction: Thyroid hemiagenesis (TH) is a rare congenital anomaly characterized by the complete absence of one thyroid lobe, with or without absence of the isthmus. Its...
PEMBENTUKAN KARAKTER SOSIAL BERBASIS TRADISI ROBO-ROBO MASYARAKAT MELAYU MEMPAWAH
PEMBENTUKAN KARAKTER SOSIAL BERBASIS TRADISI ROBO-ROBO MASYARAKAT MELAYU MEMPAWAH
Tradisi Robo-Robo Masyarakat Melayu Mempawah merupakan ritual tolak bala yang dilaksanakan setiap tahun pada hari Rabu terakhir bulan Safar. Tradisi ini mencerminkan nilai-nilai so...
CSIG-18. HYPERMETHYLATION OF SLIT-ROBO PATHWAY GENES RESULTS IN INACTIVATION IN GLIOMA PROGRESSION
CSIG-18. HYPERMETHYLATION OF SLIT-ROBO PATHWAY GENES RESULTS IN INACTIVATION IN GLIOMA PROGRESSION
Abstract INTRODUCTION Glioblastomas (GBM) are the most common and malignant primary brain tumors. Their rapid growth and invasio...
Slit/Robo signaling regulates Leydig cell steroidogenesis
Slit/Robo signaling regulates Leydig cell steroidogenesis
Abstract Background First identified as a regulator of neuronal axon guidance, Slit/Robo signaling has since been implicated in additional physiolog...
Hydatid Disease of The Brain Parenchyma: A Systematic Review
Hydatid Disease of The Brain Parenchyma: A Systematic Review
Abstarct Introduction Isolated brain hydatid disease (BHD) is an extremely rare form of echinococcosis. A prompt and timely diagnosis is a crucial step in disease management. This ...
Abstract 73: Dysregulation of Robo-4 causes Pathological Cerebrovascular Angiogenesis in Diabetes
Abstract 73: Dysregulation of Robo-4 causes Pathological Cerebrovascular Angiogenesis in Diabetes
Diabetes increases the risk and exacerbates the progress of cerebral complications including stroke and cognitive impairment. Diabetic Goto-Kakizaki (GK) rats suffer loss of vascul...

Back to Top