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Klein Lab

Skip to main content. Department of Systems Biology. 200 Longwood Avenue - Alpert 536. Boston, MA 02115. Cells in metazoans are remarkable in their ability to cooperate to form tissues with correct size and function. They do so with no precise template and almost no external oversight. Our lab studies the behaviors and properties of cellular systems that underlie this ability to self-organize, allowing tissues to persist and regenerate over decades of adult life.

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Skip to main content. Department of Systems Biology. 200 Longwood Avenue - Alpert 536. Boston, MA 02115. Cells in metazoans are remarkable in their ability to cooperate to form tissues with correct size and function. They do so with no precise template and almost no external oversight. Our lab studies the behaviors and properties of cellular systems that underlie this ability to self-organize, allowing tissues to persist and regenerate over decades of adult life.
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Klein Lab | klein.hms.harvard.edu Reviews

https://klein.hms.harvard.edu

Skip to main content. Department of Systems Biology. 200 Longwood Avenue - Alpert 536. Boston, MA 02115. Cells in metazoans are remarkable in their ability to cooperate to form tissues with correct size and function. They do so with no precise template and almost no external oversight. Our lab studies the behaviors and properties of cellular systems that underlie this ability to self-organize, allowing tissues to persist and regenerate over decades of adult life.

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Opportunities | Klein Lab

http://klein.hms.harvard.edu/opportunities

Skip to main content. Department of Systems Biology. 200 Longwood Avenue - Alpert 536. Boston, MA 02115. We are currently accepting applications for a postdoctoral fellowship position in our group. We are particularly interested in candidates enthusiastic about blending computational and experimental approaches in their work. If you are interested, please send your CV and a cover letter describing your research interests to Allon. We are also taking rotation students!

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Droplet barcoding for single-cell transcriptomics applied to embryonic stem cells. | Klein Lab

http://klein.hms.harvard.edu/publications/droplet-barcoding-single-cell-transcriptomics-applied-embryonic-stem-cells

Skip to main content. Department of Systems Biology. 200 Longwood Avenue - Alpert 536. Boston, MA 02115. Droplet barcoding for single-cell transcriptomics applied to embryonic stem cells. Klein AM, Mazutis L, Akartuna I, Tallapragada N, Veres A, Li V, Peshkin L, Weitz DA, Kirschner MW. Droplet barcoding for single-cell transcriptomics applied to embryonic stem cells. Cell 2015;161 (5) :1187-201. Droplet barcoding for single-cell transcriptomics applied to embryonic stem cells.

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Basolateral junction proteins regulate competition for the follicle stem cell niche in the Drosophila ovary. | Klein Lab

http://klein.hms.harvard.edu/publications/basolateral-junction-proteins-regulate-competition-follicle-stem-cell-niche

Skip to main content. Department of Systems Biology. 200 Longwood Avenue - Alpert 536. Boston, MA 02115. Basolateral junction proteins regulate competition for the follicle stem cell niche in the Drosophila ovary. Kronen MR, Schoenfelder KP, Klein AM, Nystul TG. Basolateral junction proteins regulate competition for the follicle stem cell niche in the Drosophila ovary. PLoS One. 2014;9 (7) :e101085. Last updated on 06/12/2015. Interfollicular epidermal stem cells self-renew via autocrine Wnt signaling.

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Klein Lab

http://klein.hms.harvard.edu/home

Skip to main content. Department of Systems Biology. 200 Longwood Avenue - Alpert 536. Boston, MA 02115. Cells in metazoans are remarkable in their ability to cooperate to form tissues with correct size and function. They do so with no precise template and almost no external oversight. Our lab studies the behaviors and properties of cellular systems that underlie this ability to self-organize, allowing tissues to persist and regenerate over decades of adult life.

5

Resources | Klein Lab

http://klein.hms.harvard.edu/resources

Skip to main content. Department of Systems Biology. 200 Longwood Avenue - Alpert 536. Boston, MA 02115. This page includes links to downloads, such as data and software that we’ve developed or use regularly in the lab. It also includes links to our collaborators, who make our interdisciplinary projects possible, and to some web resources we have found useful. Useful Databases and Bioinformatic Tools:. Cell-cycle dependent mRNA transcripts. BioMart gene symbol converter. Random DNA Sequence generator.

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faculty | Systems Biology – HMS

http://sysbio.med.harvard.edu/faculty/depace

Skip to main content. Marc W. Kirschner Ph.D. The Kirschner lab studies spatial organization and temporal control in several different biological contexts, including the cell cycle, the cytoskeleton, and embryonic development. They also study a number of important signaling pathways, notably the Wnt pathway and various post-translational modification systems. Http:/ kirschner.hms.harvard.edu/. Markus Basan, PhD. Angela DePace Ph.D. Angela DePace@hms.harvard.edu. Http:/ depace.med.harvard.edu. The Fontana...

sysbio.med.harvard.edu sysbio.med.harvard.edu

faculty | Systems Biology – HMS

http://sysbio.med.harvard.edu/faculty

Skip to main content. Marc W. Kirschner Ph.D. The Kirschner lab studies spatial organization and temporal control in several different biological contexts, including the cell cycle, the cytoskeleton, and embryonic development. They also study a number of important signaling pathways, notably the Wnt pathway and various post-translational modification systems. Http:/ kirschner.hms.harvard.edu/. Markus Basan, PhD. Angela DePace Ph.D. Angela DePace@hms.harvard.edu. Http:/ depace.med.harvard.edu. The Fontana...

sysbio.med.harvard.edu sysbio.med.harvard.edu

faculty | Systems Biology – HMS

http://sysbio.med.harvard.edu/faculty/fontana

Skip to main content. Marc W. Kirschner Ph.D. The Kirschner lab studies spatial organization and temporal control in several different biological contexts, including the cell cycle, the cytoskeleton, and embryonic development. They also study a number of important signaling pathways, notably the Wnt pathway and various post-translational modification systems. Http:/ kirschner.hms.harvard.edu/. Markus Basan, PhD. Angela DePace Ph.D. Angela DePace@hms.harvard.edu. Http:/ depace.med.harvard.edu. The Fontana...

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klein.hms.harvard.edu klein.hms.harvard.edu

Klein Lab

Skip to main content. Department of Systems Biology. 200 Longwood Avenue - Alpert 536. Boston, MA 02115. Cells in metazoans are remarkable in their ability to cooperate to form tissues with correct size and function. They do so with no precise template and almost no external oversight. Our lab studies the behaviors and properties of cellular systems that underlie this ability to self-organize, allowing tissues to persist and regenerate over decades of adult life.

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Works with all Browsers without the Netscape communicator).

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A Klein Sistemas Eletrônicos possui infra-estrutura própria para o desenvolvimento do projeto e a sua fabricação, garantindo o controle total do processo, o que propicia a qualidade de seus produtos e serviços. Com moderna infra-estrutura e recursos adequados, a Klein Sistemas Eletrônicos assegura os resultados e a satisfação esperados. RUA VER. CARLOS EMÍLIO KOLLING, 75, NOVO HAMBURGO-RS TELEFONE: (51) 3067-1280.

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TITANIUM GRADE – Niobio. TITANIUM GRADE – Niobio. Drawn, ground, in bars and wire. With diameter tolerance until ISO h5. Surgical, dental, implants and instruments. With high machinability grade 5-4-2. Stainless and tempered, martensitic steel. Thickness from 0,03 mm width until 1000 mm. Flatwire with width from 0,30 mm. Supplier of wire, bars, strip and titanium of very high precision. Klein is a Swiss company founded in 1934 as a manufacturer of drawn and cold rolled steel. For the watch industry.

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