Selected article for: "cell invasion and gene expression"

Author: Blazejewski, Tomasz; Nursimulu, Nirvana; Pszenny, Viviana; Dangoudoubiyam, Sriveny; Namasivayam, Sivaranjani; Chiasson, Melissa A.; Chessman, Kyle; Tonkin, Michelle; Swapna, Lakshmipuram S.; Hung, Stacy S.; Bridgers, Joshua; Ricklefs, Stacy M.; Boulanger, Martin J.; Dubey, Jitender P.; Porcella, Stephen F.; Kissinger, Jessica C.; Howe, Daniel K.; Grigg, Michael E.; Parkinson, John
Title: Systems-Based Analysis of the Sarcocystis neurona Genome Identifies Pathways That Contribute to a Heteroxenous Life Cycle
  • Document date: 2015_2_10
  • ID: 64mb9smi_27
    Snippet: The Sarcocystis invasion machinery was largely conserved within the coccidia, and the construction of the S. neurona interaction network based on gene expression data identified two main clusters of conservation, one composed largely of MIC, AMA1, and RON proteins required for the mechanics of cell attachment and invasion and another composed of a limited set of ROP and GRA proteins thought to alter host immune effector function......
    Document: The Sarcocystis invasion machinery was largely conserved within the coccidia, and the construction of the S. neurona interaction network based on gene expression data identified two main clusters of conservation, one composed largely of MIC, AMA1, and RON proteins required for the mechanics of cell attachment and invasion and another composed of a limited set of ROP and GRA proteins thought to alter host immune effector function.

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