Abstract

Autosomal dominant missense mutations in BICD2 cause Spinal Muscular Atrophy Lower Extremity Predominant 2 (SMALED2), a developmental disease of motor neurons. BICD2 is a key component of the cytoplasmic dynein/dynactin motor complex, which in axons drives the microtubule-dependent retrograde transport of intracellular cargo towards the cell soma. Patients with pathological mutations in BICD2 develop malformations of cortical and cerebellar development similar to Bicd2 knockout (−/−) mice. In this study we sought to re-examine the motor neuron phenotype of conditional Bicd2−/− mice. Bicd2−/− mice show a significant reduction in the number of large calibre motor neurons of the L4 ventral root compared to wild type mice. Muscle-specific knockout of Bicd2 results in a similar reduction in L4 ventral axons comparable to global Bicd2−/− mice. Rab6, a small GTPase required for the sorting of exocytic vesicles from the Trans Golgi Network to the plasma membrane is a major binding partner of BICD2. We therefore examined the secretory pathway in SMALED2 patient fibroblasts and demonstrated that BICD2 is required for physiological flow of constitutive secretory cargoes from the Trans Golgi Network to the plasma membrane using a VSV-G reporter assay. Together, these data indicate that BICD2 loss from muscles is a major driver of non-cell autonomous pathology in the motor nervous system, which has important implications for future therapeutic approaches in SMALED2.

Highlights

  • Spinal Muscular Atrophy Lower Extremity Predominant (SMALED) is a disease of lower motor neurons, principally affecting the lower limbs

  • It has long been thought that mutations in Bicaudal D2 (BICD2) and DYNC1H1 impair axonal transport leading to motor neuron degeneration

  • Bicd2−/− mice display a significant motor neuron loss Due to the similarities between severe Spinal Muscular Atrophy Lower Extremity Predominant 2 (SMALED2) patients and Bicd2−/− mice [13, 14] and the observation that missense mutations in the cargo binding domain of BICD2 impair Rab6 binding with no effect on dynein binding [5], we predicted a loss of function pathomechanism in SMALED2

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Summary

Introduction

Spinal Muscular Atrophy Lower Extremity Predominant (SMALED) is a disease of lower motor neurons, principally affecting the lower limbs. At p21, there is a significant reduction in the total number of motor axons in Bicd2−/− mice compared to wild type and this is restricted to a subpopulation of motor axons with a diameter of 2.5–4 μm (Fig. 1a-c; Bicd2+/+ mean = 926 ± 22.7 (SEM, n = 7), Bicd2−/− = 806 ± 25.0 (n = 7), unpaired ttest, p = 0.0041).

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