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Structure of a heterogeneous, glycosylated, lipid-bound, in vivo-grown protein crystal at atomic resolution from the viviparous cockroach Diploptera punctata

Macromolecular crystals for X-ray diffraction studies are typically grown in vitro from pure and homogeneous samples; however, there are examples of protein crystals that have been identified in vivo. Recent developments in micro-crystallography techniques and the advent of X-ray free-electron laser...

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Autores principales: Banerjee, Sanchari, Coussens, Nathan P., Gallat, François-Xavier, Sathyanarayanan, Nitish, Srikanth, Jandhyam, Yagi, Koichiro J., Gray, James S. S., Tobe, Stephen S., Stay, Barbara, Chavas, Leonard M. G., Ramaswamy, Subramanian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4937783/
https://www.ncbi.nlm.nih.gov/pubmed/27437115
http://dx.doi.org/10.1107/S2052252516008903
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author Banerjee, Sanchari
Coussens, Nathan P.
Gallat, François-Xavier
Sathyanarayanan, Nitish
Srikanth, Jandhyam
Yagi, Koichiro J.
Gray, James S. S.
Tobe, Stephen S.
Stay, Barbara
Chavas, Leonard M. G.
Ramaswamy, Subramanian
author_facet Banerjee, Sanchari
Coussens, Nathan P.
Gallat, François-Xavier
Sathyanarayanan, Nitish
Srikanth, Jandhyam
Yagi, Koichiro J.
Gray, James S. S.
Tobe, Stephen S.
Stay, Barbara
Chavas, Leonard M. G.
Ramaswamy, Subramanian
author_sort Banerjee, Sanchari
collection PubMed
description Macromolecular crystals for X-ray diffraction studies are typically grown in vitro from pure and homogeneous samples; however, there are examples of protein crystals that have been identified in vivo. Recent developments in micro-crystallography techniques and the advent of X-ray free-electron lasers have allowed the determination of several protein structures from crystals grown in cellulo. Here, an atomic resolution (1.2 Å) crystal structure is reported of heterogeneous milk proteins grown inside a living organism in their functional niche. These in vivo-grown crystals were isolated from the midgut of an embryo within the only known viviparous cockroach, Diploptera punctata. The milk proteins crystallized in space group P1, and a structure was determined by anomalous dispersion from the native S atoms. The data revealed glycosylated proteins that adopt a lipocalin fold, bind lipids and organize to form a tightly packed crystalline lattice. A single crystal is estimated to contain more than three times the energy of an equivalent mass of dairy milk. This unique storage form of nourishment for developing embryos allows access to a constant supply of complete nutrients. Notably, the crystalline cockroach-milk proteins are highly heterogeneous with respect to amino-acid sequence, glycosylation and bound fatty-acid composition. These data present a unique example of protein heterogeneity within a single in vivo-grown crystal of a natural protein in its native environment at atomic resolution.
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spelling pubmed-49377832016-07-19 Structure of a heterogeneous, glycosylated, lipid-bound, in vivo-grown protein crystal at atomic resolution from the viviparous cockroach Diploptera punctata Banerjee, Sanchari Coussens, Nathan P. Gallat, François-Xavier Sathyanarayanan, Nitish Srikanth, Jandhyam Yagi, Koichiro J. Gray, James S. S. Tobe, Stephen S. Stay, Barbara Chavas, Leonard M. G. Ramaswamy, Subramanian IUCrJ Research Papers Macromolecular crystals for X-ray diffraction studies are typically grown in vitro from pure and homogeneous samples; however, there are examples of protein crystals that have been identified in vivo. Recent developments in micro-crystallography techniques and the advent of X-ray free-electron lasers have allowed the determination of several protein structures from crystals grown in cellulo. Here, an atomic resolution (1.2 Å) crystal structure is reported of heterogeneous milk proteins grown inside a living organism in their functional niche. These in vivo-grown crystals were isolated from the midgut of an embryo within the only known viviparous cockroach, Diploptera punctata. The milk proteins crystallized in space group P1, and a structure was determined by anomalous dispersion from the native S atoms. The data revealed glycosylated proteins that adopt a lipocalin fold, bind lipids and organize to form a tightly packed crystalline lattice. A single crystal is estimated to contain more than three times the energy of an equivalent mass of dairy milk. This unique storage form of nourishment for developing embryos allows access to a constant supply of complete nutrients. Notably, the crystalline cockroach-milk proteins are highly heterogeneous with respect to amino-acid sequence, glycosylation and bound fatty-acid composition. These data present a unique example of protein heterogeneity within a single in vivo-grown crystal of a natural protein in its native environment at atomic resolution. International Union of Crystallography 2016-06-27 /pmc/articles/PMC4937783/ /pubmed/27437115 http://dx.doi.org/10.1107/S2052252516008903 Text en © Sanchari Banerjee et al. 2016 http://creativecommons.org/licenses/by/2.0/uk/ This is an open-access article distributed under the terms of the Creative Commons Attribution Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.
spellingShingle Research Papers
Banerjee, Sanchari
Coussens, Nathan P.
Gallat, François-Xavier
Sathyanarayanan, Nitish
Srikanth, Jandhyam
Yagi, Koichiro J.
Gray, James S. S.
Tobe, Stephen S.
Stay, Barbara
Chavas, Leonard M. G.
Ramaswamy, Subramanian
Structure of a heterogeneous, glycosylated, lipid-bound, in vivo-grown protein crystal at atomic resolution from the viviparous cockroach Diploptera punctata
title Structure of a heterogeneous, glycosylated, lipid-bound, in vivo-grown protein crystal at atomic resolution from the viviparous cockroach Diploptera punctata
title_full Structure of a heterogeneous, glycosylated, lipid-bound, in vivo-grown protein crystal at atomic resolution from the viviparous cockroach Diploptera punctata
title_fullStr Structure of a heterogeneous, glycosylated, lipid-bound, in vivo-grown protein crystal at atomic resolution from the viviparous cockroach Diploptera punctata
title_full_unstemmed Structure of a heterogeneous, glycosylated, lipid-bound, in vivo-grown protein crystal at atomic resolution from the viviparous cockroach Diploptera punctata
title_short Structure of a heterogeneous, glycosylated, lipid-bound, in vivo-grown protein crystal at atomic resolution from the viviparous cockroach Diploptera punctata
title_sort structure of a heterogeneous, glycosylated, lipid-bound, in vivo-grown protein crystal at atomic resolution from the viviparous cockroach diploptera punctata
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4937783/
https://www.ncbi.nlm.nih.gov/pubmed/27437115
http://dx.doi.org/10.1107/S2052252516008903
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