bioRxiv · 10.1101/2020.07.15.204123
On the Emergence of P-Loop NTPase and Rossmann Enzymes from a Beta-Alpha-Beta Ancestral Fragment
Abstract
Dating back to the last universal common ancestor (LUCA), the P-loop NTPases and Rossmanns now comprise the most ubiquitous and diverse enzyme lineages. Intriguing similarities in their overall architecture and phosphate binding motifs suggest common ancestry; however, due to a lack of sequence identity and some fundamental structural differences, these families are considered independent emergences. To address this longstanding dichotomy, we systematically searched for bridge proteins with structure and sequence elements shared by both lineages. We detected homologous segments that span the first {beta}{beta} segment of both lineages and include two key functional motifs: (i) a phosphate binding loop - the Walker A motif of P-loop NTPases or the Rossmann equivalent, both residing at the N-terminus of 1; and (ii) an Asp at the tip of {beta}2. The latter comprises the Walker B aspartate that chelates the catalytic metal in P-loop NTPases, or the canonical Rossmann {beta}2-Asp that binds the cofactors ribose moiety. Tubulin, a Rossmann GTPase, demonstrates the potential of the {beta}2-Asp to take either one of these two roles. We conclude that common P-loops/Rossmann ancestry is plausible, although convergence cannot be completely ruled out. Regardless, both lineages most likely emerged from a polypeptide comprising a {beta}{beta} segment carrying the above two functional motifs, a segment that comprises the core of both enzyme families to this very day.
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Longo, L. M., Jablonska, J., Vyas, P., Kolodny, R., Ben-Tal, N., Tawfik, D. S.. 2020-07-15. On the Emergence of P-Loop NTPase and Rossmann Enzymes from a Beta-Alpha-Beta Ancestral Fragment. https://doi.org/10.1101/2020.07.15.204123
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