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Bondage, D.

Publications and source records attributed to Bondage, D..

2 recordsLinked to original sources

Heritable Immunization Establishes a New Model for Pathogen Control

Heritable immunization represents a promising approach for controlling infectious diseases by embedding immunity directly into the genomes of wild species that spread human pathogens. Here, we report the genetic engineering of Mus musculus to produce a neutralizing, protective single-chain antibody against Borrelia burgdorferi, the causative agent of Lyme disease. Engineered mice stably produced a LA-2 scFv-albumin fusion protein across multiple generations, demonstrating robust heritability and stability of gene expression. Following sequential challenges with infected and uninfected ticks, heterozygous mice exhibited strong resistance to infection, effectively interrupting the Borrelia burgdorferi disease transmission cycle. Having recently established novel protocols to genetically engineer the white-footed mouse, Peromyscus leucopus, a key reservoir of Lyme disease, these findings demonstrate the feasibility of heritable immunization as a potential strategy for mitigating Lyme disease transmission in the environment. More broadly, engineered reservoir immunity may offer a generalizable approach to controlling vector-borne and zoonotic disease with profound potential to improve human health.

bioengineering↗

Effector loading onto VgrG spike proteins is critical for the assembly of the type VI secretion system in Agrobacterium tumefaciens

The type VI secretion system (T6SS) is used by many bacteria to engage in social behaviors with others and can directly or indirectly affect the health of plants and animals. Because activities associated with T6SS are often costly, the assembly and activation of the T6SS must be highly regulated. However, our knowledge regarding how T6SS assembly and contraction are regulated remains limited. Here we show that the loading of effectors onto their cognate carriers is critical for the assembly of a functional T6SS in Agrobacterium tumefaciens. A. tumefaciens strain C58 encodes one T6SS and two Tde DNase toxin effectors used as major weapons for interbacterial competition. We found that loading of Tde effectors onto their cognate carrier, the VgrG spike, is required for active T6SS secretion. Our data also suggest the assembly of the TssBC contractile sheath occurs only after Tde effectors are loaded onto the VgrG spike. The requirement of effector loading for efficient T6SS secretion was also validated in other A. tumefaciens strains. Such a mechanism may be used by bacteria as a strategy for efficacious T6SS firing. Given the prevalence of T6SS-encoding loci in host-associated bacteria, these findings inform on mechanisms that influence the composition of microbial communities and the services provided to hosts.

microbiology↗