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Ankur, A.

Publications and source records attributed to Ankur, A..

2 recordsLinked to original sources

α-1,3-Glucan-Driven Remodeling of the Conidial Cell Wall in an Aspergillus fumigatus Vaccine Strain Alters Innate Immune Recognition

Aspergillus fumigatus is a major cause of invasive aspergillosis in immunocompromised patients, where current antifungal therapies are limited by toxicity, drug resistance, and lack of durable protection, and no vaccines are available. A mutant lacking the sterylglucosidase-encoding gene (sglA) has emerged as a candidate that induces protective immune responses, but the structural basis for this phenotype remains unclear. Here, we use cellular solid-state NMR spectroscopy to compare the organization of the conidial cell wall in {Delta}sglA and its wild-type counterpart. The {Delta}sglA conidial cell wall displays extensive remodeling, including increased -1,3-glucan content and structural polymorphism, strengthened interactions with {beta}-glucans, reduced hydration, and restricted molecular motion, together consolidating a more rigid scaffold with limited {beta}-glucan accessibility. These structural changes are associated with altered neutrophil responses and a shift in innate immune signaling. This work links cell-wall reorganization to altered immune recognition in this vaccine candidate, with implications for future immunotherapeutic strategies. TEASERMolecular-level Insights from a fungal vaccine candidate show how cell-wall remodeling could affect immune response.

biochemistry↗

Polymorphic α-Glucans as Structural Scaffolds in Cryptococcus Cell Walls for Chitin, Capsule, and Melanin: Insights from 13C and 1H Solid-State NMR

Cryptococcus species are major fungal pathogens responsible for life-threatening infections in approximately a million individuals globally each year, with alarmingly high mortality rates. These fungi are distinguished by a distinctive cell wall architecture further reinforced by two virulence-associated layers, melanin and capsule, rendering them insensitive to antifungal agents targeting the cell wall, such as echinocandins. The molecular interplay between these three biomolecular layers remains poorly understood. Here we employ solid-state NMR spectroscopy to examine intact cells of both wild-type and capsule-deficient strains of C. neoformans, along with its melanized cells. High-resolution 13C and 1H data revealed five distinct structural forms of -1,3-glucans that play versatile roles in forming the rigid cell wall scaffold by interacting with chitin microfibrils and chitosan, and in stabilizing the mobile matrix by associating with {beta}-1,6-glucan and a small fraction of {beta}-1,3-glucan. Two primary forms of -1,3-glucans were distributed throughout the cell wall, hosting melanin deposition in the inner domain and capsule attachment on the cell surface. These findings offer a paradigm shift in understanding the cryptococcal cell wall and its interaction with two key virulence factors on opposite sides, raising critical biochemical questions that could inform the development of more effective antifungal treatments for cryptococcosis.

biochemistry↗