AI Article Synopsis

  • Bifidobacterium bifidum has two sialidases (SiaBb1 and SiaBb2) that help release free sialic acid from mucin, aiding in nutrient utilization for the coexisting Bifidobacterium breve.
  • The SiaBb1 contains an additional O-acetylesterase (Est) domain that enhances the sialidase activity of SiaBb2, leading to higher sialic acid release from mucin.
  • This mechanism demonstrates how B. bifidum's sialidases work together to improve nutrient sharing, specifically sialic acid cross-feeding, benefiting both bacteria in their environment.

Article Abstract

Bifidobacterium bifidum possesses two extracellular sialidases (SiaBb1 and SiaBb2) that release free sialic acid from mucin sialoglycans, which can be utilized via cross-feeding by Bifidobacterium breve that, otherwise, is prevented from utilizing this nutrient source. Modification of sialic acids with O-acetyl esters is known to protect mucin glycans from degradation by bacterial sialidases. Compared to SiaBb2, SiaBb1 has an additional O-acetylesterase (Est) domain. We aimed to elucidate the role of the SiaBb1 Est domain from B. bifidum in sialic acid cross-feeding within Bifidobacterium. Pre-treatment of mucin secreted from bovine submaxillary glands (BSM) using His -tagged-Est and -SiaBb2 released a higher amount of sialic acid compared to the pre-treatment by His -SiaBb2. Growth of B. breve increased with an increase in nanE expression when supplemented with both His -Est- and His -SiaBb2-treated BSM. These results indicate that the esterase activity of the SiaBb1 Est domain enhances the efficiency of SiaBb2 to cleave sialic acid from mucin. This free sialic acid can be utilized by coexisting sialic acid scavenging B. breve via cross-feeding. Here, we provide the molecular mechanism underlying the unique sialoglycan degradation property of B. bifidum which is mediated by the complementary activities of SiaBb1 and SiaBb2 in the context of sialic acid cross-feeding.

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Source
http://dx.doi.org/10.1111/1758-2229.13083DOI Listing

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