Published April 20, 2018 | Version Accepted Version + Submitted + Supplemental Material
Journal Article Open

Observing the Cell in Its Native State: Imaging Subcellular Dynamics in Multicellular Organisms

Abstract

True physiological imaging of subcellular dynamics requires studying cells within their parent organisms, where all the environmental cues that drive gene expression, and hence the phenotypes that we actually observe, are present. A complete understanding also requires volumetric imaging of the cell and its surroundings at high spatiotemporal resolution, without inducing undue stress on either. We combined lattice light-sheet microscopy with adaptive optics to achieve, across large multicellular volumes, noninvasive aberration-free imaging of subcellular processes, including endocytosis, organelle remodeling during mitosis, and the migration of axons, immune cells, and metastatic cancer cells in vivo. The technology reveals the phenotypic diversity within cells across different organisms and developmental stages and may offer insights into how cells harness their intrinsic variability to adapt to different physiological environments.

Additional Information

© 2018 American Association for the Advancement of Science. Received 5 October 2017; accepted 19 February 2018. We thank the Shared Resource teams at the Janelia Research Campus for their skill and dedication in specimen handling and preparation, K. Schaefer for the preparation of cancer cells for the xenograph experiments, and the Instrument Design and Fabrication team for their manufacturing expertise. We also gratefully acknowledge the support of the Janelia Visitor Program. S.U. thanks H. Elliott, D. Richmond, and R. Gao for discussions and acknowledges the MATLAB code repository received from the Computational Image Analysis Workshop supported by NIH grant GM103792. Funding: T.-L.L., D.E.M., V.S., J.S., M.K., E.M.M., and E.B. are funded by the Howard Hughes Medical Institute (HHMI). T.K. and S.U. are funded by grants from Biogen, Ionis Pharmaceuticals, and NIH grant R01GM075252 (to T.K.). S.U. is a Fellow at the Image and Data Analysis core at Harvard Medical School. S.S. is funded by a Living Systems Institute start-up grant, University of Exeter. K.R.M., I.A.S., Z.M.C., T.W.H., and S.G.M. were supported by NIH grant R01DC015478. D.Q.M. is funded by the NIH (5R00CA154870-05 and 1R01GM121597-01). D.Q.M. and B.L.M. are funded by the Carol M. Baldwin Foundation and are Damon Runyon-Rachleff Innovators supported (in part) by the Damon Runyon Cancer Research Foundation (DRR-47-17). B.L.M. is also funded by the NSF (IOS1452928). D.H. is a Pew-Stewart Scholar for Cancer Research supported by the Pew Charitable Trusts and NIH grant R01CA196884. D.D. was supported by a Human Frontier Science Program Fellowship. D.G.D. was supported by NIH grant R35GM118149. Author contributions: E.B. supervised the project and wrote the manuscript with input from all coauthors. T.-L.L. built the microscope with input from E.B., D.E.M., and K.W. and performed all microscope characterization experiments. D.E.M. created the instrument control software. T.-L.L., V.S., and S.U. acquired all biological data with coauthors. D.D., D.G.D., R.F., and D.H. provided organoids and led related experiments. T.K., S.U., B.C., and S.S. provided transgenic zebrafish and AP2 cells and led related clathrin experiments. Z.M.C., T.W.H., and S.G.M. created the mCardinal-PM transgenic zebrafish. T.K., S.G.M., S.U., and I.A.S. provided zebrafish and led related organelle dynamics and in vivo immune cell experiments. J.S. and M.K. created the Autobow zebrafish, and M.K. led related experiments. A.Q.K., T.N.M., and D.Q.M. provided C. elegans specimens and led related experiments. B.L.M. provided MDA-MB-231 cells and vasculature-labeled zebrafish and led related experiments with D.Q.M. Y.R., H.Y., and E.M.M. provided Arabidopsis specimens and led related experiments. S.U., K.R.M., T.-L.L., and V.S. processed all image data. S.U. performed quantitative analysis of all image data. S.U., T.-L.L., and E.B. produced all figures and movies. Competing interests: Portions of the technology described herein are covered by U.S. Patent 7,894,136 issued to E.B., assigned to Lattice Light of Ashburn, VA, and licensed to Carl Zeiss Microscopy; U.S. Patents 8,711,211 and 9,477,074 issued to E.B., assigned to HHMI, and licensed to Carl Zeiss Microscopy; U.S. Patent application 13/844,405 filed by E.B. and K.W. and assigned to HHMI; and U.S. Patent 9,500,846 issued to E.B. and K.W. and assigned to HHMI. Data and materials availability: All data needed to evaluate the conclusions in the paper are present in the paper or the supplementary materials. Documentation for construction of a lattice light-sheet microscope can be obtained by execution of a research license agreement with HHMI.

Attached Files

Accepted Version - nihms967325.pdf

Submitted - 243352.full.pdf

Supplemental Material - aaq1392_Liu_SM.pdf

Supplemental Material - aaq1392s1.mp4

Supplemental Material - aaq1392s2.mp4

Supplemental Material - aaq1392s3.mp4

Supplemental Material - aaq1392s4.mp4

Supplemental Material - aaq1392s5.mp4

Supplemental Material - aaq1392s6.mp4

Supplemental Material - aaq1392s7.mp4

Supplemental Material - aaq1392s8.mp4

Files

243352.full.pdf

Files (306.4 MB)

Name Size
md5:f9ff08fc14d6903b18d078e37125f97b
130.3 MB Preview Download
md5:773ac3a82d84ec3f485ff86d7d9a66da
58.4 MB Preview Download
md5:19bb9c0682bd8737d5f6aeb40565adad
231.6 kB Preview Download
md5:684c825139ade1f819a78eefb54db2c5
10.9 MB Preview Download
md5:cb6ccc247378acea5080137ec57616a0
16.6 MB Preview Download
md5:3b4b0a1b075b087ad6d17a65d3a26c99
16.8 MB Preview Download
md5:2bc580e153129f90549266a9c99b78d7
8.7 MB Preview Download
md5:c77b74eddd2c6b245f8f57ede491ce6b
20.4 MB Preview Download
md5:1c587ff1276dc68a8beb9f8cb9cffbaf
27.9 MB Preview Download
md5:d690967f1c8d615cf2a3ccfd61717e3d
11.8 MB Preview Download
md5:a474728244c201d464630befae2178f0
4.5 MB Preview Download

Additional details

Identifiers

PMCID
PMC6040645
Eprint ID
84597
Resolver ID
CaltechAUTHORS:20180131-105220231

Related works

Describes
10.1101/243352 (DOI)

Funding

NIH
GM103792
Howard Hughes Medical Institute (HHMI)
Biogen
Ionis Pharmaceuticals
NIH
R01GM075252
Harvard Medical School
University of Exeter
NIH
R01DC015478
NIH
5R00CA154870-05
NIH
1R01GM121597-01
Carol M. Baldwin Foundation
Damon Runyon Cancer Research Foundation
DRR-47-17
NSF
IOS-1452928
Pew Charitable Trust
NIH
R01CA196884
Human Frontier Science Program
NIH
R35GM118149

Dates

Created
2018-02-02
Created from EPrint's datestamp field
Updated
2022-03-11
Created from EPrint's last_modified field