---
title: Identifying the Path to Infection
date: 2004-11-10T12:17:02-08:00
author: Bill Marler
canonical_url: "https://marlerclark.com/news_events/identifying-the-path-to-infection"
section: News
---
[All News](/news_events) / [Outbreaks](https://marlerclark.com/news_events/outbreaks) /

# Identifying the Path to Infection

 

 

 Medi-Lexicon reports: **New protein structure is a first step toward preventing [E coli](http://www.about-ecoli.com/) diseases**.  
Scientists from the US Department of Energy’s Brookhaven National Laboratory and Stony Brook University have determined the two-dimensional crystal structure of a membrane protein involved in the process by which the Escherichia coli (E. coli) bacteria infects a human. This protein structure is a first step to better understanding how an E. coli infection begins, which may lead to information on how to block it.  
“E. coli is responsible for urinary tract infections, one of the most prevalent diseases in the U.S.,” said Brookhaven biologist Huilin Li, the lead researcher on the study, described in the November 2, 2004, online edition of the Journal of Molecular Biology. “Between 50 and 80 percent of U.S. women will experience a urinary tract infection at least once during their lifetimes.”

  
“In the first stage of the infection, E. coli binds tightly to human kidney cells, using an ‘adhesive protein’ secreted by the cells through a membrane protein ‘channel.’ Our structure of this protein channel helps show how secretion occurs, which may eventually lead us to determine how to stop E. coli from attaching to the human cell,” said Li.  
The protein channel, known as “PapC,” is a member of the “chaperone/usher” family, channels that not only provide a pathway for certain substances to leave a cell but also participate in preparing the substance for secretion. In this case, PapC gathers the “parts” that make up the adhesive and then guides the assembled adhesive out of the cell.  
Li and his colleagues found that PapC consists of two main structural elements, with each part containing one opening, or pore. Each pore is approximately two nanometers (billionths of a meter) in diameter, and the entire structure is 11 nanometers in length and seven nanometers wide.  
While this structure might suggest that PapC uses both pores simultaneously, the researchers think that only one of the two pores may be in use at once. However, the twin pore configuration might be necessary to coordinate the assembly and secretion of the adhesive. This is consistent with other membrane proteins that perform similar functions.  
“Our finding provides new insight into how the adhesive protein is assembled and secreted, but we need to know more about this process,” said Li. “A greater understanding of this will aid in the study and treatment of urinary tract infections and other related diseases.”  
To determine the structure, the researchers grew a two-dimensional crystal of PapC – a sheet with a thickness of just one protein. To image individual proteins in the crystal, they used a technique called cryo-electron microscopy. In this method, the crystal is cooled to about minus 300 degrees Fahrenheit using liquid nitrogen and placed in an electron microscope. This device bombards the sample with high-energy electrons, which scatter off the atoms in the crystal. A lens inside the microscope focuses these electrons, forming a high-resolution image, which is recorded using film or a digital camera. The recorded images are analyzed by a computer, yielding the structure of the protein molecule.  
This method produced a top-down image of the protein channel from an “untilted” sheet of crystals – that is, the electron beam hit the sheet head-on. To determine the channel’s three-dimensional structure, Li and his group plan to perform additional high-resolution imaging experiments using the same crystal sheet, but tilting it to large angles. This will allow the electrons to scatter off and produce an image of the protein channel’s other sides.  
This research is a collaborative effort between researchers in Brookhaven Lab’s Biology Department, Tianbo Liu of Brookhaven’s Physics Department, and David Thanassi, a biologist in Stony Brook University’s Department of Molecular Genetics and Microbiology. The research was funded by a Brookhaven Laboratory Directed Research and Development grant, the National Institutes of Health, and the Office of Biological and Environmental Research within the U.S. Department of Energy’s Office of Science.

  

### Other E. coli Lawsuits

 [Raw Farms linked to another Raw Milk Cheese E.coli Outbreak - 9 People sickened - Company refuses to recall product](https://marlerclark.com/raw-farms-linked-to-another-raw-milk-cheese-e-coli-outbreak-7-people-sickened)

 [10 with E. coli linked to Cheese](https://marlerclark.com/3-with-e-coli-linked-to-cheese)

 [Sycamore Pool in Chico California Contaminated with E.coli - Two teens in ICU](https://marlerclark.com/sycamore-pool-in-chico-california-contaminated-with-e-coli-two-teens-in-icu)

 [Deadly Nationwide E.coli Outbreak Linked to Grimmway Farms Organic Baby and Whole Carrots sickens 48](https://marlerclark.com/nationwide-e-coli-outbreak-linked-to-grimmway-farms-organic-baby-and-whole-carrots)

 [E. coli Outbreak tied to Red Cow and Hen House Restaurants](https://marlerclark.com/e-coli-outbreak-tied-to-red-cow-and-hen-house-restaurants)

 [Rockwood Summit High School E. coli Outbreak](https://marlerclark.com/rockwood-summit-high-school-e-coli-outbreak)

 [McDonalds linked to 104 E. coli cases and 1 Death](https://marlerclark.com/mcdonalds-linked-to-nearly-50-e-coli-cases-and-1-death)

 [2 dead with 22 injured in E. coli Hamburger Outbreak in Montana](https://marlerclark.com/1-dead-with-13-injured-in-e-coli-hamburger-outbreak-in-montana)

 [E. coli Outbreak in Washington and California linked to Walnuts](https://marlerclark.com/e-coli-outbreak-in-washington-and-california-linked-to-walnuts)

 [Seattle PCC Market E. coli outbreak linked to Guacamole](https://marlerclark.com/seattle-ppc-market-e-coli-outbreak-linked-to-guacamole)

 [11 with E. coli linked to Raw Milk LLC Cheese](https://marlerclark.com/10-with-e-coli-linked-to-raw-milk-llc-cheese)

 [Miguel’s Cocina 4S Ranch E. coli Outbreak sickens 35](https://marlerclark.com/miguels-cocina-4s-ranch-e-coli-outbreak)

 

 

 

### Lawsuit updates about foodborne illnesses

 [Reactive Arthritis Lawsuit Updates](/news_events/case-news?illness=reactive-arthritis&year=all)

 [E. coli Lawsuit Updates](/news_events/case-news?illness=e-coli&year=all)

 [Guillain-Barre Syndrome Lawsuit Updates](/news_events/case-news?illness=guillain-barre-syndrome&year=all)

 [Salmonella Lawsuit Updates](/news_events/case-news?illness=salmonella&year=all)

 [Hemolytic Uremic Syndrome Lawsuit Updates](/news_events/case-news?illness=hemolytic-uremic-syndrome&year=all)

 [Listeria Lawsuit Updates](/news_events/case-news?illness=listeria&year=all)

 [Irritable Bowel Syndrome Lawsuit Updates](/news_events/case-news?illness=irritable-bowel-syndrome&year=all)

 [Hepatitis A Lawsuit Updates](/news_events/case-news?illness=hepatitis-a&year=all)

 [Norovirus Lawsuit Updates](/news_events/case-news?illness=norovirus&year=all)

 [Botulism Lawsuit Updates](/news_events/case-news?illness=botulism&year=all)

 [Campylobacter Lawsuit Updates](/news_events/case-news?illness=campylobacter&year=all)

 [Shigella Lawsuit Updates](/news_events/case-news?illness=shigella&year=all)

 [Cyclospora Lawsuit Updates](/news_events/case-news?illness=cyclospora&year=all)

 

 

### Lawsuits updates by year

 [Foodborne Illness Lawsuits in 1998](https://marlerclark.com/news_events/case-news?illness=all&year=1998)

 [Foodborne Illness Lawsuits in 1999](https://marlerclark.com/news_events/case-news?illness=all&year=1999)

 [Foodborne Illness Lawsuits in 2000](https://marlerclark.com/news_events/case-news?illness=all&year=2000)

 [Foodborne Illness Lawsuits in 2001](https://marlerclark.com/news_events/case-news?illness=all&year=2001)

 [Foodborne Illness Lawsuits in 2002](https://marlerclark.com/news_events/case-news?illness=all&year=2002)

 [Foodborne Illness Lawsuits in 2003](https://marlerclark.com/news_events/case-news?illness=all&year=2003)

 [Foodborne Illness Lawsuits in 2004](https://marlerclark.com/news_events/case-news?illness=all&year=2004)

 [Foodborne Illness Lawsuits in 2005](https://marlerclark.com/news_events/case-news?illness=all&year=2005)

 [Foodborne Illness Lawsuits in 2006](https://marlerclark.com/news_events/case-news?illness=all&year=2006)

 [Foodborne Illness Lawsuits in 2007](https://marlerclark.com/news_events/case-news?illness=all&year=2007)

 [Foodborne Illness Lawsuits in 2008](https://marlerclark.com/news_events/case-news?illness=all&year=2008)

 [Foodborne Illness Lawsuits in 2009](https://marlerclark.com/news_events/case-news?illness=all&year=2009)

 [Foodborne Illness Lawsuits in 2010](https://marlerclark.com/news_events/case-news?illness=all&year=2010)

 [Foodborne Illness Lawsuits in 2011](https://marlerclark.com/news_events/case-news?illness=all&year=2011)

 [Foodborne Illness Lawsuits in 2012](https://marlerclark.com/news_events/case-news?illness=all&year=2012)

 [Foodborne Illness Lawsuits in 2013](https://marlerclark.com/news_events/case-news?illness=all&year=2013)

 [Foodborne Illness Lawsuits in 2014](https://marlerclark.com/news_events/case-news?illness=all&year=2014)

 [Foodborne Illness Lawsuits in 2015](https://marlerclark.com/news_events/case-news?illness=all&year=2015)

 [Foodborne Illness Lawsuits in 2016](https://marlerclark.com/news_events/case-news?illness=all&year=2016)

 [Foodborne Illness Lawsuits in 2017](https://marlerclark.com/news_events/case-news?illness=all&year=2017)

 [Foodborne Illness Lawsuits in 2018](https://marlerclark.com/news_events/case-news?illness=all&year=2018)

 [Foodborne Illness Lawsuits in 2019](https://marlerclark.com/news_events/case-news?illness=all&year=2019)

 [Foodborne Illness Lawsuits in 2020](https://marlerclark.com/news_events/case-news?illness=all&year=2020)

 [Foodborne Illness Lawsuits in 2021](https://marlerclark.com/news_events/case-news?illness=all&year=2021)

 [Foodborne Illness Lawsuits in 2022](https://marlerclark.com/news_events/case-news?illness=all&year=2022)

 [Foodborne Illness Lawsuits in 2023](https://marlerclark.com/news_events/case-news?illness=all&year=2023)

 [Foodborne Illness Lawsuits in 2024](https://marlerclark.com/news_events/case-news?illness=all&year=2024)

 [Foodborne Illness Lawsuits in 2025](https://marlerclark.com/news_events/case-news?illness=all&year=2025)

 [Foodborne Illness Lawsuits in 2026](https://marlerclark.com/news_events/case-news?illness=all&year=2026)

 

 

 

##### Get Help

   

#### Affected by an outbreak or recall?

The team at Marler Clark is here to answer all your questions. Find out if you’re eligible for a lawsuit, what questions to ask your doctor, and more.

 [ Get a free consultation ](https://marlerclark.com/contact) 

##### Related Resources

   

 

######  [E. coli Food Poisoning](https://marlerclark.com/foodborne-illnesses/e-coli/e-coli-food-poisoning) 

What is E. coli and how does it cause food poisoning? Escherichia coli (E. coli) is a highly studied, common species of bacteria that belongs to the family Enterobacteriaceae, so...

 

######  [E. coli O157:H7](https://marlerclark.com/foodborne-illnesses/e-coli/e-coli-o157h7) 

E. coli O157:H7 is a foodborne pathogen that causes food poisoning. E. coli O157:H7 is the most commonly identified and the most notorious Shiga toxin-producing E. coli (STEC) serotype in...

 

######  [Non-O157 STEC](https://marlerclark.com/foodborne-illnesses/e-coli/non-o157-stec) 

Non-O157 Shiga Toxin-Producing E. coli can also cause food poisoning. E. coli O157:H7 may be the most notorious serotype of Shiga toxin-producing E. coli (STEC), but there are at least...

 

######  [Sources of E. coli](https://marlerclark.com/foodborne-illnesses/e-coli/sources-of-e-coli) 

Where do E. coli O157:H7 and non-O157 Shiga toxin-producing E. coli (STEC) come from? The primary reservoirs, or ultimate sources, of E. coli O157:H7 and non-O157 STEC in nature are...

 

######  [Transmission of and Infection with E. coli](https://marlerclark.com/foodborne-illnesses/e-coli/transmission-of-and-infection-with-e-coli) 

While many dairy cattle-associated foodborne disease outbreaks are linked to raw milk and other raw dairy products (e.g., cheeses, butter, ice cream), dairy cattle still represent a source of contamination...

 

##### Outbreak Database

   

#### Looking for a comprehensive list of outbreaks?

The team at Marler Clark is here to answer all your questions. Find out if you’re eligible for a lawsuit, what questions to ask your doctor, and more.

 [ View Outbreak Database

  ](https://outbreakdatabase.com)
