Non-immunogenic utrophin gene therapy for the treatment of muscular dystrophy animal models.

Song, Yafeng; Morales, Leon; Malik, Alock S; Mead, Andrew F; Greer, Christopher D; Mitchell, Marilyn A; Petrov, Mihail T; Su, Leonard T et al. · Nat Med · 2019

basic_science · Level V

Where this comes from

Abstract

The essential product of the Duchenne muscular dystrophy (DMD) gene is dystrophin<sup>1</sup>, a rod-like protein<sup>2</sup> that protects striated myocytes from contraction-induced injury<sup>3,4</sup>. Dystrophin-related protein (or utrophin) retains most of the structural and protein binding elements of dystrophin<sup>5</sup>. Importantly, normal thymic expression in DMD patients<sup>6</sup> should protect utrophin by central immunologic tolerance. We designed a codon-optimized, synthetic transgene encoding a miniaturized utrophin (µUtro), deliverable by adeno-associated virus (AAV) vectors. Here, we show that µUtro is a highly functional, non-immunogenic substitute for dystrophin, preventing the most deleterious histological and physiological aspects of muscular dystrophy in small and large animal models. Following systemic administration of an AAV-µUtro to neonatal dystrophin-deficient mdx mice, histological and biochemical markers of myonecrosis and regeneration are completely suppressed throughout growth to adult weight. In the dystrophin-deficient golden retriever model, µUtro non-toxically prevented myonecrosis, even in the most powerful muscles. In a stringent test of immunogenicity, focal expression of µUtro in the deletional-null German shorthaired pointer model produced no evidence of cell-mediated immunity, in contrast to the robust T cell response against similarly constructed µDystrophin (µDystro). These findings support a model in which utrophin-derived therapies might be used to treat clinical dystrophin deficiency, with a favorable immunologic profile and preserved function in the face of extreme miniaturization.

Medical subject headings